Design of integrated fault detection, diagnosis and reconfigurable control systems

Youmin Zhang, Jin Jiang
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引用次数: 72

Abstract

In this paper, a novel approach for integrated fault detection, diagnosis and reconfigurable control systems design in the discrete-time stochastic domain is proposed. The scheme is based on a two-stage adaptive Kalman filter for simultaneous state and fault parameter estimation, statistical decisions for fault detection, diagnosis and activation of controller reconfiguration. Using the information provided by the fault detection and diagnosis scheme, the reconfigurable controller is designed automatically using an eigenstructure assignment technique. To eliminate the steady-state tracking error, a feedforward reconfigurable control law is also incorporated. The proposed approach has been evaluated using two examples. The effectiveness and superiority of the proposed approach have been demonstrated in comparison with existing reconfigurable controllers which are based on linear quadratic regulator and other eigenstructure assignment techniques.
集成故障检测、诊断和可重构控制系统的设计
本文提出了一种基于离散时间随机域的集成故障检测、诊断和可重构控制系统设计的新方法。该方案基于两阶段自适应卡尔曼滤波,用于同步状态和故障参数估计,用于故障检测、诊断和控制器重构激活的统计决策。利用故障检测诊断方案提供的信息,采用特征结构分配技术自动设计可重构控制器。为了消除稳态跟踪误差,还引入了前馈可重构控制律。用两个实例对所提出的方法进行了评价。通过与现有基于线性二次型调节器和其他特征结构分配技术的可重构控制器的比较,证明了该方法的有效性和优越性。
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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