RSRC LVINLBVW ` @<sKH3 X\`P6H,9X ُ B~sWsa{#`}LVIN.compare_process_simulation_and_measurements.viPOLY*CD Convert Control Design to Simulation.vi PTH0uaddonsControl Design_Model ConversionsSimulation Model.llb*CD Convert Control Design to Simulation.viCODECDTKLVIN.CD Convert TF to SIM SISO Transfer Function.vi x 6@P @!status @code@0source error out@ Sampling Time [dt] (s)@SIM SISO Transfer Function.ctlHP @@ @ Numeric Numerator"@@ @ Numeric Denominator"Simulation Transfer Function Model@@P @!status @code@0sourceerror in (no error) @Output @Input@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelPTH0yaddonsControl Design_Model ConversionsSimulation Model.llb.CD Convert TF to SIM SISO Transfer Function.viCODECDTKPOLYCD Read Model from File.vi1PTH0caddonsControl Design_Model ConstructionModel File IO.llbCD Read Model from File.viCODECDTKLVINcd_Read Model from File (TF).vi x  6@P @!status @code@0source error out@@@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelTransfer Function Model@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)'First Transfer Function Model in Record@2 New File Path@Mark after Read (records)@@P @!status @code@0sourceerror in (no error)@Records to Read (-1,all)@Offset (records:0)$@2File Path (dialog if empty)PTH0haddonsControl Design_Model ConstructionModel File IO.llbcd_Read Model from File (TF).viCODECDTKPOLY%CD Draw Transfer Function Equation.viPTH0baddonsControl Design_UtilityModel Viewer.llb%CD Draw Transfer Function Equation.viCODECDTKLVIN*cd_Draw Transfer Function Equation (TF).vi x 6@P @!status @code@0source error out,@P @Width @HeightDraw Area Size@3Equation@@P @!status @code@0sourceerror in (no error)@Input (column)@ Output (row)@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelPTH0gaddonsControl Design_UtilityModel Viewer.llb*cd_Draw Transfer Function Equation (TF).viCODECDTKPOLYFP Write (Polymorphic).vi򢶄PTH0G FieldPointPolymorphic Write.llbFP Write (Polymorphic).viLVINFP Write (Float -IO).vi   8@p FieldPoint FieldPoint IOFieldPoint IO Point In8@p FieldPoint FieldPoint IOFieldPoint IO Point Out @ value@ timestamp@!on change (false)@@P @!status @code@0sourceerror in (no error)6@P @!status @code@0source error outPTH0E FieldPointPolymorphic Write.llbFP Write (Float -IO).vivPOLYFP Read (Polymorphic).vilAPTH0E FieldPointPolymorphic Read.llbFP Read (Polymorphic).viLVINFP Read (Float -IO).vi  8@p FieldPoint FieldPoint IOFieldPoint IO Point In @ Type8@p FieldPoint FieldPoint IOFieldPoint IO Point Out @ value@ timestamp@@P @!status @code@0sourceerror in (no error)6@P @!status @code@0source error outPTH0C FieldPointPolymorphic Read.llbFP Read (Float -IO).viLVINSIMSCR Init From Cluster.viD` @0 timingSource@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out4@P @!status @code@0sourceerrorin@ SIMSCR simulation parameters.ctlP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersSimulationParametersPTH0Vaddons Simulation ScriptingCompanion DiagramSIMSCR Init From Cluster.viSIMUSIMMLVINMerge Errors.vi`   6@P @!status @code@0source error outP@@6@P @!status @code@0sourceerror inerror array inB@P @!status @code@0sourceerror in 3 (no error)B@P @!status @code@0sourceerror in 2 (no error)B@P @!status @code@0sourceerror in 1 (no error)PTH0.Utility error.llbMerge Errors.viLVINSIM Set Finished Late Flag.viE x  @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@!Finished Late [i-1]@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation dataPTH0Raddons SimulationImplementationSharedSIM Set Finished Late Flag.viSIMUSIMMLVINSIM manager.vi+( @!step complete?@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation dataPTH0Caddons SimulationImplementationSharedSIM manager.vihSIMUSIMMLVIN SIM stop.vi) @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@!stop simulation?PTH0@addons SimulationImplementationShared SIM stop.viSIMUSIMMLVCC SIMSCR simulation parameters.ctly SIMSCR simulation parameters.ctl@P@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional Parameters Sim ParamsPTH0[addons Simulation ScriptingCompanion Diagram SIMSCR simulation parameters.ctlSIMUSIMMLVINSIM Fire Discrete SubVI.vi0(   @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out @!Fire!@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@Sample Rate DivisorPTH0Oaddons SimulationImplementationSharedSIM Fire Discrete SubVI.viSIMUSIMMLVINSIM Time Waveform (scalar).vi   @ Value@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data outPTH0oaddons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform (scalar).vi?SIMUSIMMLVIN SIM Halt.viJ  @!Halt?@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data outPTH0Aaddons SimulationUtilityImplementation SIM Halt.viSIMUSIMMLVIN1SIM Discrete Transfer Function Buffered (SISO).vi   @sample rate divisor @ inputZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data @ output@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out"@0DNL_Simulation CallChainPTH0addons SimulationDiscreteLinearImplementation+SIM Discrete Transfer Function Buffered.llb1SIM Discrete Transfer Function Buffered (SISO).viSIMUSIMMLVINSIM Time Waveform (vector).vi  @@ @ ValueValue@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data outPTH0oaddons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform (vector).viSIMUSIMMLVCC*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl8񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl>@P @Alarm @Ring @Ring 2 @True Id Timing InfoPTH0XPlatform TimedLoop utilities.llb*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctlLVTLLVTL-LVCC timing.ctl timing.ctlb@P @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorIn Timing outPTH08Platform TimedLoop utilities.llb timing.ctlLVTLLVTL-LVINloadlvalarms.viPTH0APlatform TimedLoopConfigExtNode.llbloadlvalarms.viLVTLLVTL-MMP< cP P d-`  P   b P         @P  c PP"@P@flg@oRt@eofudfP dup dfdP txdP oldP ext c(RP"@P@flg@oRt@eofudf P!Stopx!dfdP!txdP!oldP!extj Pp@fP0@PP!!!!l@bP0   !!!$@P0!!!B@8PPbPP@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes000P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesb P         @P b P         @P  cJP"@P@flg@oRt@eofudfP@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributeschart dybp@TTNPTP @ P!0SdfdbP@TTNPTP @ P!0StxdbP@TTNPTP @ P!0SoldbP@TTNPTP @ P!0Sext c fP"@P@flg@oRt@eofudfP3Model p3dfd P3txd P3old P3extj Pp@fP0@PP!!!!l@bP0   !!!$@P0!!!B@8PPZPP@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes000P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesb P         @P b P         @P P"@P@flg@oRt@eofudfPTP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributeschart duXpTNPTP @ P!0SdfdXPTNPTP @ P!0StxdXPTNPTP @ P!0SoldXPTNPTP @ P!0Sext0 P*P0020 c'lP"@P@flg@oRt@eofudfP2 model_estim p2dfd P2txd P2old P2ext P   c8TP"@P@flg@oRt@eofudf P u0 [V]x dfdP txdP oldP ext P   c4TP"@P@flg@oRt@eofudf P y0 [V]x dfdP txdP oldP ext P   c4NP"@P@flg@oRt@eofudfP ux dfdP txdP oldP ext P    P    P    P    P    P cP"@P@flg@oRt@eofudfP SIMSCR simulation parameters.ctlP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersSimulationParameters2pP     00dfd2PP     00txd2PP     00old2PP     00ext P@P@.P     00"@P@"@P@@P0" P@@" P@@" P@@8`p FieldPoint FieldPoint IOFieldPoint IO Point In h Type" P@@" P@@< P@@@ @Numericr` timing.ctlVP @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInTiming8`p FieldPoint FieldPoint IOFieldPoint IO Point In8`p FieldPoint FieldPoint IOFieldPoint IO Point In8`p FieldPoint FieldPoint IOFieldPoint IO Point In h TypeZ P$@P@0P !`Sample Rate DivisorZ P$@P@0P !`Sample Rate Divisor`sample rate divisor c c$ c` cL c @Output @Input@@P @!status @code@0sourceerror in (no error) c@SIM SISO Transfer Function.ctlHP @@ @ Numeric Numerator"@@ @ Numeric Denominator"Simulation Transfer Function Model,@P @Width @HeightDraw Area Size@3Equation@ Output (row)@Input (column)@@P @!status @code@0sourceerror in (no error) c@ Sampling Time [dt] (s)6@P @!status @code@0source error out6@P @!status @code@0source error out c@2 New File Path@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)'First Transfer Function Model in Record@@@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelTransfer Function Model@2 model_estim$@2File Path (dialog if empty)@Records to Read (-1,all)@@P @!status @code@0sourceerror in (no error) c@Offset (records:0) c @ output"@0DNL_Simulation CallChain@ @ output@sample rate divisor @!Fire! c"P0DNL_Simulation CallChain@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data c! c@Sample Rate Divisor@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform ChartZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function @ du@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out c@P @Period@Initial Offset@ Loop Priority@ Timeout (ms) @Log Idx @Mode@0source@0 loop name2P @Alarm @Ring @Ring 2 @True Id@4@P @!status @code@0sourceErrorInTiming@!stop simulation?@!step complete? c@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out cP@@6@P @!status @code@0sourceerror inerror array inB@P @!status @code@0sourceerror in 3 (no error) c@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart@ timestamp@!on change (false)@@P @!status @code@0sourceerror in (no error)6@P @!status @code@0source error out cP @Expected end [i-1]@Actual end [i-1]@Expected start [i]@Actual start [i]d@NormalAbortedAsynchronous wakeupTiming source errorTimed loop errorTimeout Wakeup reason@!Finished Late [i-1] @Period @Offset@Priority@ No change/Process missed periods, maintain original phase/Discard missed periods, maintain original phase-Process missed periods, ignore original phase-Discard missed periods, ignore original phaseMode@@Reserved cP @Period @Offset@Priority@ No change/Process missed periods, maintain original phase/Discard missed periods, maintain original phase-Process missed periods, ignore original phase-Discard missed periods, ignore original phaseMode@@Reserved @Period! cP du@P@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional Parameters Sim Params@ SIMSCR simulation parameters.ctlP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersSimulationParameters6@P @!status @code@0sourceerror IO c@0 timingSource @ y0 [V] @!Stop @ u0 [V]@P @Period@Initial Offset@ Loop Priority@ Timeout (ms) @Log Idx @Mode@0source@0 loop name2P @Alarm @Ring @Ring 2 @True Id@4@P @!status @code@0sourceErrorInTiming!4@P @!status @code@0sourceerrorin c c @ value@ timestamp @ Value@@P @!status @code@0sourceerror in (no error) c @ value6@P @!status @code@0source error out c! c @ u0 [V]B@P @!status @code@0sourceerror in 1 (no error) c P value @!Fire! c@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@Sample Rate Divisor c2PP @!status @code@0sourceError cp@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out)@0 Loop name @@ @NumericReserved@0 Clock Source@ Logging Idx @PeriodrP timing.ctlVP @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInTiming c@Initial Offset@ Timeout (ms)@ Loop priority@ offset mode c\ c c4 c c< c cl c c c c< c cl c c c cl c c c c< c c| c c\ c c$ c c| c c| c c| c c.b*@P @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop name<@P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInTiming(2(P @Alarm @Ring @Ring 2 @True Id c c@P @Period@Initial Offset@ Loop Priority@ Timeout (ms) @Log Idx @Mode@0source@0 loop name2P @Alarm @Ring @Ring 2 @True Id@4@P @!status @code@0sourceErrorInTiming c  c c 6hP @!status @code@0sourceerror IO c c c c c cZbV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out d P```. P  d7DDd,M LX D  L  D^/~?$@$$@@?5<tqdy_meas=y_meas-y0 [V]=>>tq q dy_sim [V]=>>q Simulation Time AmplitudeF)@M@@QGxS @N??ə?>$@$$@@?$W33334?  W33334?" / )  #% Tahoma &*7  Tahoma &*7z  Tahoma &&1!2  Tahoma . *!7P - 0.6236  Tahoma &*P7Uz  Tahoma . *U7 - 0.3671  Tahoma , !E0.0216  Tahoma &E!Jz  Tahoma . 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The labs in SYSLAB can be downloaded from http://www-pors.hit.no/~finnh/syslab/, and can be used freely. -------------------------------------------------------------------------------- 2000, Finn Haugen, Telemark University College, Norway Finn.Haugen@hit.no, http://www-pors.hit.no/~finnh%.1f%.1f%.0f%#_g%.0f%#_g%.2f%.2f%#_g%#_g%#_g%.2f%#_g%#_g%#_g%#_g%#_g%.0fIEEGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info4@SIM SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper InfoPTH09addons SimulationUtilityImplementation SIM Halt.vi  @!Halt? SubVI Vers @Vers=99 CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfoSimulation data outSimulation dataValueWaveform Chart CfgPage Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info2@SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper Info InPTH0^addons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform.vi !@@ @ ValueValue  #@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart SubVI Vers @Vers u q q CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfoDNL_Simulation CallChainSimulation data outSimulation datasample rate divisorinputTransfer Functionoutput CfgPage Vers @Vers Feedthru Info@SIM Feedthru Info.ctlP`@@D@P@0Term(@@@0String Ind Fed TermsClusterFeedthrough List*@@ @!BooleanFeedthrough Map @Vers@SIM DyanmicFeedbackInfo.ctlP:@SIM FeedbackStyle.ctlstaticdynamicStyleB@SIM FeedbackBehavior.ctlDirectIndirectBehavior@2 CallbackVI@2Direct FT. 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UserEditableDynamic Feedback Info Feedthru InfoinputoutputPTH0daddons SimulationContinuousLinearSIM TransferFunction.llb#SIM TransferFunction_DynFeedback.viPTH0addons SimulationDiscreteLinearImplementation)SIM Discrete Transfer Function Direct.llb(SIM Discrete Transfer Function Direct.viPTH0addons SimulationDiscreteLinearImplementation+SIM Discrete Transfer Function Buffered.llb*SIM Discrete Transfer Function Buffered.vi Feedthru Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info0 Generic SimX Vers @Vers SubVI Info4@SIM SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper InfoPTH0addons SimulationDiscreteLinearImplementation+SIM Discrete Transfer Function Buffered.llb*SIM Discrete Transfer Function Buffered.vi ! @ input ZZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function 0# @ output SubVI Vers @Vers# CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfoSimulation data outSimulation dataValueWaveform Chart CfgPage Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info2@SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper Info InPTH0^addons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform.vi ! @ Value  #@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart SubVI Vers @Vers %#_15g%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f%.0f / + +Generic SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info 2@SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper Info InPTH09addons SimulationUtilityImplementation SIM Halt.vi  @!Halt? RR@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data VV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out SubVI Vers @VersL@nitlVersionedState.ctlP @Version @SDataVersioned DataD@nitlCurState.ctlP<@P @Period@Initial Offset@ Loop priority@ Timeout (ms) @mode@0 Source name@0 Source type@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out)@Log to trace tool @@ @NumericReservedTiming$@@ @!Boolean Wired Inputs@!Compile?@!Show as Icons?@S G Only Data@@f@nitlTargetSpecificData.ctl*P@0 Target Name@S Target DataTL Target Specific DataTarget Specific Data State Datad1 kHz 1 kHz ClockL1309621DVTP @Version @SVariant@nitlGOnlyData.ctlP@!Has User Configuredv@nitlVisibleControls.ctlHPB@@2@P@disabled @!Visible @SvalueClusterprops Control Props G Only Data                    L@nitlVersionedState.ctlP @Version @SDataVersioned DataD@nitlCurState.ctlP<@P @Period@Initial Offset@ Loop priority@ Timeout (ms) @mode@0 Source name@0 Source type@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out)@Log to trace tool @@ @NumericReservedTiming$@@ @!Boolean Wired Inputs@!Compile?@!Show as Icons?@S G Only Data@@f@nitlTargetSpecificData.ctl*P@0 Target Name@S Target DataTL Target Specific DataTarget Specific Data State Datad1 kHz 1 kHz Clock L63560455<|  L63560411%!! CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfoValueSimulation dataWaveform ChartSimulation data out CfgPage Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info 2@SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper Info InPTH0^addons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform.vi !@@ @ ValueValue RR@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data  #@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart VV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out SubVI Vers @Vers CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfosample rate divisorinputTransfer FunctionSimulation dataoutputSimulation data outDNL_Simulation CallChain CfgPage Vers @Vers Feedthru Info@SIM Feedthru Info.ctlP`@@D@P@0Term(@@@0String Ind Fed TermsClusterFeedthrough List*@@ @!BooleanFeedthrough Map @Vers@SIM DyanmicFeedbackInfo.ctlP:@SIM FeedbackStyle.ctlstaticdynamicStyleB@SIM FeedbackBehavior.ctlDirectIndirectBehavior@2 CallbackVI@2Direct FT. Imp VI@2Indirect FT. Imp VI@! UserEditableDynamic Feedback Info Feedthru InfoinputoutputPTH0daddons SimulationContinuousLinearSIM TransferFunction.llb#SIM TransferFunction_DynFeedback.viPTH0addons SimulationDiscreteLinearImplementation)SIM Discrete Transfer Function Direct.llb(SIM Discrete Transfer Function Direct.viPTH0addons SimulationDiscreteLinearImplementation+SIM Discrete Transfer Function Buffered.llb*SIM Discrete Transfer Function Buffered.vi Feedthru Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info0 Generic SimX Vers @Vers SubVI Info 4@SIM SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper InfoPTH0addons SimulationDiscreteLinearImplementation+SIM Discrete Transfer Function Buffered.llb*SIM Discrete Transfer Function Buffered.vi ! @ input ZZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function $RR@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data 0# @ output $VV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out$ 0""@0DNL_Simulation CallChain SubVI Vers @Vers  CfgPage InfoZ@SIM CfgPageInfo.ctl2P`@SIM TermDataList.ctl4@*@P@0TypeDesc @SDataCluster TermDataTable@SIM PrevIdxTable.ctl@@P@0Label@Idx^@SIM TermDataSource.ctl2 Config PageInternal TerminalOnlyTerminal Data Source TermIdx ItemTerm Source Table @Vers CfgPageInfoValueSimulation dataWaveform ChartSimulation data out CfgPage Vers @VersGeneric SimX Info@SIM GenericSimXInfo.ctlP(@P @Width @Height Dimensions @ColorF@SIM Orientation.ctlForwardBackwardBlock Orientation@@SIM TargetDiag.ctlSimDiagCompDiag Target Diag @VersGeneric SimX Info Generic SimX Vers @Vers SubVI Info v2@SubVIWrapperInfo.ctlP@2 Wrapped SubVI@ CurPolyIdx @Vers@SubVIFancy Icon Style@@@H XTermSpec.ctlzP:@H XRect32.ctlP@t@l@b@rbounds @flags@0attrs @width@@3wImgstSpecTermSpecSubVI Wrapper Info InPTH0^addons Simulation SignalDisplayImplementationSIM Time Waveform.llbSIM Time Waveform.vi ! @ Value RR@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data  #@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart VV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out SubVI Vers @Vers %#_15g%.0f%.0f%.0fdE%PPePDTHPDoL88~@ @2 model_estim! @ u0 [V] @ y0 [V]@ du  @!Halt?*@@ @ ValueValueZJ x  6@P @!status @code@0source error out@@@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelTransfer Function Model@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)'First Transfer Function Model in Record@2 New File Path@Mark after Read (records)@@P @!status @code@0sourceerror in (no error)@Records to Read (-1,all)@Offset (records:0)$@2File Path (dialog if empty)@SIM SISO Transfer Function.ctlHP @@ @ Numeric Numerator"@@ @ Numeric Denominator"Simulation Transfer Function ModelF6@P @!status @code@0source error out&@@@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function ModelTransfer Function Model@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)'First Transfer Function Model in Record&@2 New File Path.@Mark after Read (records)L@@P @!status @code@0sourceerror in (no error) .@Records to Read (-1,all)$@Offset (records:0)0$@2File Path (dialog if empty) x 6@P @!status @code@0source error out,@P @Width @HeightDraw Area Size@3Equation@@P @!status @code@0sourceerror in (no error)@Input (column)@ Output (row)@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function Model*@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data outfV@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out8,@P @Width @HeightDraw Area Size"@3Equation @!Stop@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributeschart dujZPP@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes   P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes@3Model @ Value@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart @Input (column)"@ Output (row)"@ Loop priority"@ Timeout (ms)@ Logging Idx@ offset mode&@0 Clock Source"@0 Loop nameH<@P @Alarm @Ring @Ring 2 @True Id Ref (out), @@ @NumericReserved@4@P @!status @code@0sourceErrorIn @Initial Offsetpd x 6@P @!status @code@0source error out@ Sampling Time [dt] (s)@SIM SISO Transfer Function.ctlHP @@ @ Numeric Numerator"@@ @ Numeric Denominator"Simulation Transfer Function Model@@P @!status @code@0sourceerror in (no error) @Output @Input@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function Model(@ Sampling Time [dt] (s) @Period>.@P @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop name<@P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorIn Timing out @Output @Input@%CD Transfer Function Model (MIMO).ctlP@\;CD General Elements.ctlP@0 Model name&@@@0String Input names(@@@0String Output names$@@ @ Numeric Input Delays$@@ @ Numeric Output Delays@ Sampling Time@0Notes properties@@@%CD Transfer Function Model (SISO).ctlRP @@ @ Numeric numerator"@@ @ Numeric denominator @ delayClustertransfer function(s)Transfer Function Model .   @@ @ ValueValue@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out @ output @ inputjZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart&@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data$@sample rate divisorbR@PZ@ RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioF@Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@P @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limits>@@(@upperlowerbothnone limit type limit typesF@@0@risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data     @sample rate divisor @ inputZ@P @@ @ Numeric Numerator"@@ @ Numeric DenominatorTransfer Function@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data @ output@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out"@0DNL_Simulation CallChain2"@0DNL_Simulation CallChain   @!Halt?@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out     @ Value@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributesWaveform Chart@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@P@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional Parameters Sim Params@0source @code @!statusr@ timing.ctlVP @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInTiming @Numeric @True Id @Ring 2 @Ring @Alarm|p@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out)B2P @Alarm @Ring @Ring 2 @True IdfVP @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop namep@񹯌*AlarmRef__NATIONAL_INSTRUMENTS_lvalarm.ctl2P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInD8@p FieldPoint FieldPoint IOFieldPoint IO Point In$@Sample Rate Divisor r b(   @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out @!Fire!@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@Sample Rate Divisor @!Fire! @ value @ TypeF6@P @!status @code@0sourceerror IO@@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributeschart dyrbPP@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes   P@TP @TPt0@ dt@@ Y2@P @!status @code@0sourceerror@S attributes&@ @ output 7`T  8@p FieldPoint FieldPoint IOFieldPoint IO Point In @ Type8@p FieldPoint FieldPoint IOFieldPoint IO Point Out @ value@ timestamp@@P @!status @code@0sourceerror in (no error)6@P @!status @code@0source error out@ timestampD8@p FieldPoint FieldPoint IOFieldPoint IO Point Outl`   8@p FieldPoint FieldPoint IOFieldPoint IO Point In8@p FieldPoint FieldPoint IOFieldPoint IO Point Out @ value@ timestamp@!on change (false)@@P @!status @code@0sourceerror in (no error)6@P @!status @code@0source error out&@!on change (false)@ u ` T @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@!stop simulation?&@!stop simulation? d X( @!step complete?@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data @!step complete? x  @dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out@!Finished Late [i-1]@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data$@!Finished Late [i-1]&P @Period @Offset@Priority@ No change/Process missed periods, maintain original phase/Discard missed periods, maintain original phase-Process missed periods, ignore original phase-Discard missed periods, ignore original phaseMode@@ReservedP @Expected end [i-1]@Actual end [i-1]@Expected start [i]@Actual start [i]d@NormalAbortedAsynchronous wakeupTiming source errorTimed loop errorTimeout Wakeup reason@!Finished Late [i-1] @Period @Offset@Priority@ No change/Process missed periods, maintain original phase/Discard missed periods, maintain original phase-Process missed periods, ignore original phase-Discard missed periods, ignore original phaseMode@@Reserved@P @Period@Initial Offset@ Loop Priority@ Timeout (ms) @Log Idx @Mode@0source@0 loop name2P @Alarm @Ring @Ring 2 @True Id@4@P @!status @code@0sourceErrorInTimingB2@P @!status @code@0sourceError:*@P @Period@Initial Offset@ Loop priority@ Timeout (ms)@ Logging Idx@ offset mode@0 Clock Source@0 Loop name<@P @Alarm @Ring @Ring 2 @True Id Ref (out) @@ @NumericReserved4@P @!status @code@0sourceErrorInTiming|p`   6@P @!status @code@0source error outP@@6@P @!status @code@0sourceerror inerror array inB@P @!status @code@0sourceerror in 3 (no error)B@P @!status @code@0sourceerror in 2 (no error)B@P @!status @code@0sourceerror in 1 (no error)RB@P @!status @code@0sourceerror in 1 (no error)RB@P @!status @code@0sourceerror in 2 (no error)RB@P @!status @code@0sourceerror in 3 (no error)\P@@6@P @!status @code@0sourceerror inerror array in` @0 timingSource@dSIM simulation data.ctlP~@SIM integration method.ctlD RK 1 (Euler)Adams LinearizerRK 3RK 4RK 45BDFRK 2RK 23continuous integrator@ initial time@ final time@ step size@ proposed step size@ max step size@ min step size@ discrete time step@ max step ratioj@SIM diagram eval stage.ctl6Init Minor Substep Major Substep Discrete stepDiag Eval Stage@ Substep Index@Timestep Index@ simulation time@ current timestep base@ proposed step time@ absolute tolerance@ relative tolerance@!step accepted?@!step complete? @!Halt?@!reset integrator?@ machine epsilon@ min float@SIM solver state data.ctlP @@ @ Numericinputs@@ @ Numericoutputs@@ @ Numericreset$@@ @ Numeric lower limits$@@ @ Numeric upper limitsZ@@D@SIM limit type.ctlupperlowerbothnone limit type limit typesd@@N@SIM trigger type.ctl"risingfallingeithernone trigger type reset types*@@ @ Numericinitial conditions"@@ @ Numeric reset I.C. @@ @!Booleanlimited? State data2@P @!status @code@0sourceerror@ Method Order@!Finished Late [i-1]Simulation data out4@P @!status @code@0sourceerrorin@ SIMSCR simulation parameters.ctlP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersSimulationParameters@ SIMSCR simulation parameters.ctlP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersSimulationParameters@4@P @!status @code@0sourceerrorin&@0 timingSource.@0Additional Parameters*@0Continuous Solver, @Discrete Time Step Multiple$@ Relative Tolerance$@ Absolute Tolerance@ Time Step@ Final Time"@ Initial TimeP@ Initial Time@ Final Time@ Time Step@ Absolute Tolerance@ Relative Tolerance @Discrete Time Step Multiple@0Continuous Solver@0Additional ParametersB2@P @!status @code@0sourceerror00H\l  , P | | |  8 hxx |< |\\ \t | |xxt | Ppx,L  |" | | |"" | $ $$$<&<1h11h1 |x2 |2 | | | |H\H777>Relative ToleranceHQgDeeDiscrete Time Step MultipleHQ]D 1 1Continuous SolverHQ76aD%2C%2CAdditional ParametersHoQ8E78E6HD܆L+8+8fD&(CD Read Model from File.vivDU%W$*CD Convert Control Design to Simulation.vi[DHalt SimulationHDlQ''HD Qiluimu \D`=l`?l SimTime WaveformHD$QIsKrfDDiscrete Transfer FunctionHD$PQ'6)5qDon%CD Draw Transfer Function Equation.viHD$RHD@wQHDR?eK?fK \D66B68B SimTime WaveformHDwQMZ.MZ.HDcQ..HDL}.}.HDrQq*xr*xdDEGFP Read (Polymorphic).vibDGFFieldPoint IO Point InHDQ1^3]PD87TypeHDpQ ' &RD>_@^TimingHDQ,5.:RD+L-KPeriodHDR,5.4ZD+j-iInitial OffsetHDG@F [D2|4{loadlvalarms.vieD1>Y1>XFP Write (Polymorphic).vibD Z \FieldPoint IO Point InHD R))HDRS`cS`c[D$1$1Halt SimulationgDG%TG'TSIMSCR Init From Cluster.vi[DMZMZMerge Errors.viVD"[$Z Input NodeWDsu Output NodeaD^` Simulation While LoopiDO\/O\.SIM Set Finished Late Flag.vibDED Accept Step While LoopHDlQ  HD Q \Dr=~r?~ SimTime WaveformZDS`%S`$SIM manager.viWDS)`bS+`a SIM stop.vifDDiscrete Transfer FunctionHD܆LwxHDR dD$E1$G1FP Read (Polymorphic).vi\DH6TH8T SimTime WaveformHDwQwxHDLwxHDrQeDMZYMZXFP Write (Polymorphic).vibDZ+\+FieldPoint IO Point InHDQ.;.;bDGFFieldPoint IO Point InHD,Q1 ^3 ]PD"8"7TypeHDQ%2'% 2&fD&&SIM Fire Discrete SubVI.viRE(f5(g( True _D&&Sample Rate DivisorHDQ)6)6REQ^ QQ  True fDBO)BO(SIM Fire Discrete SubVI.vi_DBNOBPOSample Rate DivisorHDQR_R_iDaKnaMnSIM Time Waveform (scalar).viWD=J=J SIM Halt.vi}D1SIM Discrete Transfer Function Buffered (SISO).viHDQ_DMOsample rate divisoriDRTSIM Time Waveform (vector).vi JbJf ;d;f :: 44 ;;  >> 77 VV 99 STOP: Automatic-MIMO SSMIMO TFSISO TFMIMO ZPKSISO ZPK Automatic-SSTFZPK Automatic-SSTFZPK AlarmFPHP.compare_process_simulation_and_measurements.viLVCC SIMSCR simulation parameters.ctl0PTH0SIMUSIMMEFPHPR8ExnEXL//_7,  ~D,Tmo(Rt', <t`0 D/,p ^LtR!g  x 4 F P   ̧$ 0 k P! t>0 G P ?>@ : PJ!ff]0 J P& t  |@ : PL!vvo@ : PK!nng0 2 (:;0 2 -45D`0 P0F MF $DO@4 P ` $  4 3 ^z$ 4  2 3B$ 4 3 ^f$ 4 6 4C$ 0  P #@0 2 (;<0 2 -8h PB TT4 $ PH$ 0D/d P$0  P t>|(,P |0 7p fnL_t ~/FF||!\FEquation draws a picture of the model equation this VI defines.,H|D 0 ~' j{ 4 F  $ 0 , j {0 3 {0 ~& 8 j 8hBh , 0 W ~%0D|0d@<O Y2*4 OYr $ <  va+$ Q Y2Y2Y2Y2Y2p^w,+, 6g @L4 F & t$ 0 k! w>0 C '?>@ :J!ff]0 J& w |@ :L!vvo@ :K!nng0 2p(>? g0 2p-78D`00IX jI $`D _@4+0 + | !H4! 3p^~|4"  2p7F|4# 3^a}4$ 6O^d0%  1C0% 2(VW 0& 2-9:8'hB| @T4' $!$K80(D/1 .0(  (w>4( J  >G |0)  >td8) 2 Bp$ $8+h BRp+ :  03?c3?c3?cp+ :  3?b3?b3?bL+ :  BH0u0/.-@+P  PA >t (+|p+ :D 03 ?c3 ?c3 ?c4+ JD >G $ 8, 2D Bp$ $ L. :D BH0u0/.-0. 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