A new fast rate fault detection approach for multirate sampled-data systems

Aibing Qiu, Chenglin Wen, B. Jiang
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引用次数: 1

Abstract

An observer-based fault detection direct design method for multirate sampled-data systems (MSD) is investigated in this paper. Firstly, by use of the discrete lifting technique, the MSD fault detection problem is transformed into an equivalent slow rate pure discrete time problem based on the Hinfin optimal direct design method of single rate sampled-data systems. An Hinfin performance index is then optimized to make the obtained residuals sensitive to the faults and robust to the unknown inputs. An extend QR decomposition algorithm is put forward to ensure the residual generator satisfying the causality constraints. Finally the residual is inverse lifted to implement fast rate fault detection. Simulation results of a numerical example are provided to illustrate the efficiency of the proposed approach.
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一种新的多速率采样数据系统快速故障检测方法
研究了一种基于观测器的多速率采样数据系统故障检测直接设计方法。首先,利用离散提升技术,将MSD故障检测问题转化为基于单速率采样数据系统的Hinfin最优直接设计方法的等效慢速率纯离散时间问题;然后对Hinfin性能指标进行优化,使得到的残差对故障敏感,对未知输入具有鲁棒性。为了保证残差发生器满足因果约束,提出了一种扩展QR分解算法。最后对残差进行逆提升,实现快速故障检测。最后给出了一个数值算例的仿真结果,验证了该方法的有效性。
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