Dynamics and Tuning of Systems with Large Delay

E. Boe, Hsueh-Chia Chang
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引用次数: 3

Abstract

It is shown that for a general class of resonant systems, the cross-over frequency exhibits a discontinuous dependence on the process delay. This implies that Ziegler-Nichols type tuning techniques, which make explicit use of the cross-over frequency, will not be robust to errors/perturbations in the delay. For nonresonant systems with a cross-over frequency that depends on the delay continuously, we propose a new tuning rule for PI controllers that is superior to the classical Ziegler-Nichols and Cohen-Coon methods and show that it rapidly approaches the optimal ISE at large delay.
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大延迟系统的动力学与整定
结果表明,对于一般类型的谐振系统,交叉频率对过程延迟具有不连续的依赖性。这意味着明确使用交叉频率的齐格勒-尼科尔斯型调谐技术对延迟中的误差/扰动不具有鲁棒性。对于具有连续依赖于延迟的交叉频率的非谐振系统,我们提出了一种新的PI控制器调谐规则,该规则优于经典的Ziegler-Nichols和Cohen-Coon方法,并表明它在大延迟下迅速接近最优ISE。
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