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Exercise No.1 create and display a tfExercise 1b:Create and Display a Transfer Function Use physical specifications to create a plant model Build a transfer function with Control Design ToolkitExcise No.2 interconnectionExercise No.3Exercise No.4Exercise No.5 Time response analysisExercise No.6 frequency response and dynamic dataCD Root LocusExercise No.7 CD displayExercise No.8 create a PID controllerExercise No.9 The Simulation Loop Built in Differential Equation Solver allows continuous-time system Similar to a While Loop with a predefined time period Installed with Simulation Module Double-click Input Node to configure simulation parameters Create an indicator on the Output Node to display Simulation errorsThe simulation loop is the core component of the Simulation Module. It is an “upgraded” version of the while loop which integrates powerful differential equation solvers, internal or external timing features, and cross-platform capabilities. With the Simulation Module, continuous time systems can be run in the discrete digital world. The loop consists of three main parts: Input node (Left)- allows simulation parameters to be programmatically defined. By default, these parameters are static and can be configured by double-clicking the input node. This node can be expanded by clicking on the bottom border of the node to “grab” the handle and dragging down to show additional parameters. Main loop The system to be simulated is placed here. Output node (Right) returns any errors that may have happened in the loop, such as an improper transfer function. Configuring a SimulationThere are many parameters that can be configured for a given simulation loop. Simulation Parameters TabSimulation Time Specifies for what period of “simulation time” how long the simulation should run. This time doesnt necessarily dictate the computation time of the simulation. See Timing Parameters below.Solver Method Specifies what Ordinary Differential Equation ODE) solver is used to solve integral and differential type blocks in the simulation. A wide variety of solvers are available. Time Step and Tolerance These settings control the window of time steps used by LabVIEW. Typically, the default settings will suffice, but adjust them if necessary. Discrete Time While the Default Auto Discrete Time option will typically work for most simulations, you can force LabVIEW to use a specific step size here.Timing Parameters TabTiming The software timing option is always used when performing simulations. This will solve the equation as fast as the CPU can. To observe a simulation run in “real time”, disable the software timing option and set the timing parameters below.Loop Timing Source When implementing a simulation in hardware, change the loop timing source to an available hardware timing. This option can be used to sync the simulation execution with an external time source, such as the operating system clock or even a Data Acquisition boards clock. Loop Timing Parameters These options control how the loop executes with respect to the selected timing source.For more detailed information on these options, consult the LabVIEW help by clicking the Help button. Exercise No.10Exercise No.11 Simulate the motor ctrl systemExercise No.12 simulation- introducing nonlinearitiesExercise No.13 Tune the ControllerExercise No.14 Deployment-on the real hardware to ctrl the subject variables. need data acquisition instruments, i.g. PCI-6259Some useful web resources:System Identification Toolkit:/nips/cds/view/p/lang/en/nid/13853Control Design Toolkit:/nips/cds/view/p/lang/en/nid/13854Simulation Module:/nips/cds/view/p/
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