Smith predictor based control strategies for nonminimum phase plants

Dwaipayan Mukherjee, Debasish Ghose
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引用次数: 3

Abstract

The present paper proposes design strategies, based on the Smith predictor and its variants, for controlling nonminimum phase plants, by treating the right half plane (RHP) zeros of the system in the same way as the delay term in case of the conventional Smith predictor. Simple controllers, in conjunction with these Smith predictor like structures, can achieve good performance in terms of steady state error and disturbance rejection, for both type zero plants, as well as for plants with an integral mode. Additionally, here the order of the plant and the number of RHP zeros of the plant are not restricted. Simulations corroborate the theoretical results.
基于Smith预测器的非最小相位装置控制策略
本文提出了基于Smith预测器及其变体的控制非最小相位对象的设计策略,通过将系统的右半平面(RHP)零点与传统Smith预测器的延迟项相同的方式来处理。简单的控制器,结合这些类似史密斯预测器的结构,可以在稳态误差和干扰抑制方面取得良好的性能,对于零型植物,以及具有积分模式的植物。此外,这里工厂的顺序和工厂的RHP 0的数量不受限制。模拟结果证实了理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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