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Research on self-turning minimum variance control algorithm in non-minimum phase system

机译:非最小相位系统自转最小方差控制算法研究

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Nowadays, with the development of modern automatic production, the applicability of automatic control algorithm has been expected for higher requirements, especially in the field of modern engineering. In this paper, we have studied the traditional self-turning control method by minimum variance, analyzing its shortcomings in system identification and model construction. At the same time, to make up for the limitation that it is not suitable for non-minimum phase system, a method to increase the state tracker by using system stabilization is proposed. This method solves the problem of how to design the self-turning minimum variance control in non-minimum phase system.
机译:如今,随着现代自动生产的发展,人们对自动控制算法的适用性提出了更高的要求,特别是在现代工程领域。本文通过最小方差研究了传统的自转控制方法,分析了其在系统辨识和模型构建中的不足。同时,为了弥补不适用于非最小相位系统的局限性,提出了一种利用系统稳定度来增加状态跟踪器的方法。该方法解决了非最小相位系统中如何设计自转最小方差控制的问题。

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