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Reliable computation of PID gain space for general second-order time-delay systems

机译:一般二阶时间延迟系统的PID增益空间可靠计算

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This paper addresses the problem of determining the stability gain space of a PID controller for general second-order time-delay systems. First, a review of existing results and the associated drawbacks is presented. Subsequently, a new algorithm to compute the entire PID stability gain space is developed. The new algorithm is based upon existing results on the relationship between the stability of a quasi-polynomial and its derivatives, an extended version of the Hermit-Biehler theorem, and also the Nyquist criterion. The algorithm entails extraction of an admissible range for the PID parameter K-p, and then based on this range, a stability region in the (K-i -K-d) plane is computed. Well-known examples are studied to demonstrate the reliability and accuracy of the results.
机译:本文解决了用于一般二阶时间延迟系统的PID控制器的稳定增益空间的问题。 首先,提出了对现有结果和相关缺点的审查。 随后,开发了一种计算整个PID稳定增益空间的新算法。 新算法基于现有结果对准多项式及其衍生物的稳定性与衍生物的稳定性,封闭版的延长版本,以及奈奎斯特标准。 该算法需要提取PID参数K-P的可允许范围,然后基于该范围,计算(k-i-k-d)平面中的稳定区域。 研究了众所周知的例子以证明结果的可靠性和准确性。

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