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On Finite-Dimensional Transformations of Anisochronic Controllers Designed by Algebraic Means: A User Interface

机译:用代数方法设计的异步控制器的有限维变换:一个用户界面

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摘要

This chapter intended to propound the reader a methodology for algebraic controller design for systems with internal delays, followed by a comparison of several easy-handling techniques for rational (i.e. finite-dimensional) approximation of anisochronic (i.e. infinite-dimensional) controllers – or their transfer functions, more precisely. Matlab with Simulink was a very useful assistant here. The authors programmed a simple user interface which enables the user to enter a nominal transfer function and select approximation methods to be used and their orders. As a result, the program returns the accuracies in both text and graphical forms. Simulation experiments with the program were made. Control of a simple stable TDS, control of unstable TDS of a skater on the swaying bow and control of a laboratory circuits heating plant were benchmark examples. The results were very interesting and startling because the habitual Padé approximation proved to be very good and, moreover, the higher order approximation did not automatically mean the better result for systems with internal delays.
机译:本章旨在向读者介绍一种用于具有内部延迟的系统的代数控制器设计方法的方法,然后比较几种用于异步(即无限维)控制器(或其有限维)的简便处理技术–或它们的比较。传递函数,更精确地说。 Matlab和Simulink在这里是非常有用的助手。作者编写了一个简单的用户界面,使用户能够输入标称传递函数并选择要使用的近似方法及其顺序。结果,程序以文本和图形形式返回精度。用该程序进行了仿真实验。基准示例包括控制简单稳定的TDS,控制摇摆弓上的溜冰者的不稳定TDS和控制实验室电路加热装置。结果非常有趣且令人吃惊,因为惯常的Padé逼近被证明非常好,而且,对于内部延迟系统,高阶逼近并不自动意味着更好的结果。

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