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The MapleSim Control Design Toolbox provides a solid set of essential control design tools that extend MapleSim’s exceptional plant modelling capabilities tsupport control design. The MapleSim Control Design Toolbox provides:

  • Greater flexibility and accuracy in your controllers. The symbolic approach for designing, analysing, and testing control systems produces superior results.
  • Increased reusability of your controller designs. You can document your design decisions using the extensive technical documentation tools available with MapleSim.
  • An accelerated design process. Developing your plants and controllers together in the same environment reduces the need for inefficient tool-swapping.

Key Features

  • Provides tools for model linearisation, PID tuning, development of state-space control strategies, and custom compensator design.
  • Incorporates symbolic techniques that make it possible to
    • Characterise all possible solutions ta given control problem and then pick the best solution based on the particular situation.
    • Build and investigate controllers where the model includes symbolic, unspecified parameters. The same controller design can then be applied tmultiple related models without further tuning.
    • Create controllers where the design specifications are parametric, sthe same controller can be used successfully under a variety of conditions.
  • Provides easy-to-use MapleSim templates for interactive controller development and analysis.
  • Includes a set of 20 Maple language commands, which provides programmatic access tall functionality as an alternative tthe interactive interface and supports custom application development.
  • Templates, documentation, and examples are incorporated seamlessly intthe MapleSim environment, providing a single consistent interface for developing both the plant and the controller.

Toolbox functionality includes:

  • Model linearisation
  • Standard PID tuning techniques
    • Ziegler-Nichols time response
    • Ziegler-Nichols frequency response
    • Cohen-Coon
  • Advanced PID tuning techniques
    • Dominant pole placement
    • Pole placement in a specified region
    • Gain and phase margin
  • State Feedback Control
    • Single input pole placement (using Ackermann’s formula)
    • Multiple input pole placement
    • Linear-quadratic regulator (LQR)
  • State Estimation
    • Single output pole placement (using Ackermann’s formula)
    • Multiple output pole placement
    • Kalman Filter


Redo att beställa

MapleSim (requires Maple)
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SEK 51.755,00
MapleSim (requires Maple) - for education use
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SEK 11.940,00

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