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Limit Cycle Predictions of Nonlinear Multivariable Feedback Control Systems with Large Transportation Lags

机译:具有大运输滞后的非线性多变量反馈控制系统的极限环预测

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摘要

A practical method is developed for limit-cycle predictions in the nonlinear multivariable feedback control systems with large transportation lags. All nonlinear elements considered are linear independent. It needs only to check maximal or minimal frequency points of root loci of equivalent gains for finding a stable limit-cycle. This reduces the computation effort dramatically. The information for stable limit-cycle checking can be shown in the parameter plane also. Sinusoidal input describing functions with fundamental components are used to find equivalent gains of nonlinearities. The proposed method is illustrated by a simple numerical example and applied to one 2x2 and two 3x3 complicated nonlinear multivariable feedback control systems. Considered systems have large transportation lags. Digital simulation verifications give calculated results provide accurate limit cycle predictions of considered systems. Comparisons are made also with other methods in the current literature.
机译:针对运输滞后较大的非线性多变量反馈控制系统,提出了一种极限环预测的实用方法。所考虑的所有非线性元素都是线性无关的。它只需要检查等效增益的根基因座的最大或最小频率点,即可找到稳定的极限环。这大大减少了计算量。稳定极限循环检查的信息也可以显示在参数平面中。描述具有基本成分的函数的正弦输入用于查找等效的非线性增益。通过一个简单的数值示例说明了所提出的方法,并将其应用于一个2x2和两个3x3复杂的非线性多变量反馈控制系统。所考虑的系统具有较大的运输滞后。数字仿真验证可提供计算结果,从而为考虑的系统提供准确的极限循环预测。还与当前文献中的其他方法进行了比较。

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  • 来源
    《Journal of control science and engineering》 |2011年第1期|p.11.1-11.11|共11页
  • 作者

    Tain-Sou Tsay;

  • 作者单位

    Department of Aeronautical Engineering, National Formosa University, 64, Wen Hua Road, Huwei, Yunlin 63208, Taiwan;

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  • 正文语种 eng
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