复杂对象PID控制器综合的解析算法

I. Fiodorov, I. Cojuhari, B. Izvoreanu, Dumitru Moraru
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引用次数: 0

摘要

本文将典型控制器的最大稳定度准则综合方法推广到具有非周期响应的自动控制系统中具有任意阶惯性和非最小相位、无稳性和时滞的对象模型。设计了P、PI、PD和PID控制器综合的解析算法,这些算法表示简单的代数表达式,既要求减少计算量,又不限制控制对象的复杂性。分析了所开发算法的有效性,并给出了一些研究实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical Algorithms for Synthesis of PID Controllers to the Complex Objects
In this paper it is proposed to extend the maximum stability degree criterion method for synthesis of the typical controllers to the model of objects with arbitrary order inertia and non-minimum phase, astatism and time delay for the automatic control systems with aperiodic response. There are designed the analytical algorithms for synthesis of the P, PI, PD and PID controllers, which represent simple algebraic expressions, that require the reduced volume of calculations and not impose the restrictions on the complexity of the control object. It was analyzed the efficiency of the developed algorithms and some study cases are presented.
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