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Design of H_/H∞ fault detection observer for closed-loop nonlinear system with disturbance

机译:闭环非线性系统H_ /H∞故障检测观测器设计

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摘要

Purpose - This paper proposes a novel method of fault detection, which is based on H_/H∞ Runge-Kutta observer and an adaptive threshold for a class of closed-loop non-linear systems. The purpose of this paper is to improve the rapidity and accuracy of fault detection. Design/methodology/approach - First, the authors design the H_/H∞ Runge-Kutta fault detection observer, which is used as a residual generator to decouple the residual from the input. The H_ performance index metric in the specified frequency domain is used to describe how sensitive the residual to the fault. The H∞ norm is used to describe the residual robustness to the external disturbance of the systems. The residual generator is designed to achieve the best tradeoff between robustness against unknown disturbances but sensitivity to faults, thus realizing the accurate detection of the fault by suppressing the influence of noise and disturbance on the residual. Next, the design of the H_/H∞ fault detection observer is transformed into a convex optimization problem and solved by linear matrix inequality. Then, a new adaptive threshold is designed to improve the accuracy of fault detection. Findings - The effectiveness and correctness of the method are tested in simulation experiments. Originality/value - This paper presents a novel approach to improve the accuracy and rapidity of fault detection for closed-loop non-linear system with disturbances and noise.
机译:目的 - 本文提出了一种新颖的故障检测方法,基于H_ /H∞Runge-Kutta观察者和一类闭环非线性系统的自适应阈值。本文的目的是提高故障检测的快速度和准确性。设计/方法/方法 - 首先,作者设计了H_ /H∞runge-Kutta故障检测观察者,该故障检测观察者用作残留发生器,从输入中解耦残差。指定频域中的H_性能指数度量标准用于描述残差对故障的敏感程度。 H∞规范用于描述系统外部干扰的剩余鲁棒性。剩余发电机旨在实现鲁棒性与未知干扰之间的最佳权衡,而是对故障的敏感性,从而实现了通过抑制噪声和干扰对残余的影响来准确地检测故障。接下来,将H_ /H∞故障检测观察者的设计转换为凸优化问题,并通过线性矩阵不等式解决。然后,旨在提高故障检测的准确性新的自适应阈值。结果 - 在仿真实验中测试了该方法的有效性和正确性。原创性/值 - 本文提出了一种提高闭环非线性系统故障检测的准确性和快速性的新方法,具有干扰和噪声。

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