Synthesis of Diagnostic Observers for Linear Systems Based on Optimal Control Methods

A. Kabanov, A. V. Zuev, A. Zhirabok, V. Filaretov
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引用次数: 1

Abstract

The paper considers the problem of fault identification in dynamic systems described by linear differential equations. To solve this problem, diagnostic observers constructed on the basis of optimal control methods are used. The proposed new method for the synthesis of such observers is based on the idea of introducing a new system with some auxiliary control which plays a role of an unknown vector function describing emerging faults. This control is proposed to be formed in such a way that it provides a minimum for the residual functional. Unlike popular approaches to solving the problem of fault identification based on observers operating in a sliding mode, the proposed method allows us to expand the class of systems for which the identification problem can be solved. It is known that the methods of sliding mode observers design impose certain restrictions on the systems under consideration. The suggested theory is illustrated by an example. The simulation results confirmed the operability of the diagnostic observers synthesized using the method proposed in the work.
基于最优控制方法的线性系统诊断观测器的综合
研究用线性微分方程描述的动态系统的故障识别问题。为了解决这一问题,采用了基于最优控制方法构造的诊断观测器。提出的新方法是基于引入一个新系统的思想,该系统具有一些辅助控制,该辅助控制起未知矢量函数的作用,描述新出现的故障。这个控制被提议以这样一种方式形成,它为剩余函数提供了最小值。与基于运行在滑模中的观测器解决故障识别问题的流行方法不同,所提出的方法允许我们扩展可以解决识别问题的系统类别。众所周知,滑模观测器的设计方法对所考虑的系统有一定的限制。所提出的理论是通过一个例子来说明的。仿真结果证实了采用该方法合成的诊断观测器的可操作性。
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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