Event-Triggered Fault Detection and Control in Generalized Internal Model Control Framework

Suichun Qu, J. Wu, Weijie Guo, Bin Chen
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引用次数: 1

Abstract

The paper investigates the design of event-triggered fault detection and control in the framework of Generalized Internal Model Control (GIMC). Inspired by the GIMC structure, an observer-based feedback control structure with a fault detection unit is firstly proposed, where the event-triggered technology is also employed to reduce the communication consumption between the monitored plant and the observer. Then, since the separation principle is destroyed by the use of the event-triggered technology, the augmented system approach is used to design the observer-based controller. Further, a robust post-filter is designed, under the H-/H∞performance index, to guarantee that the residual (fault indicating) signal satisfies the optimized robustness against disturbances under the desired sensitivity to faults. Finally, a three-tank system is adopted to verify the effectiveness and superiority of the proposed scheme.
广义内模控制框架中的事件触发故障检测与控制
本文研究了广义内模控制框架下事件触发故障检测与控制的设计。受GIMC结构的启发,首先提出了一种基于观测器的带故障检测单元的反馈控制结构,并利用事件触发技术减少被监测对象与观测器之间的通信消耗。然后,由于使用事件触发技术破坏了分离原则,采用增强系统方法设计了基于观测器的控制器。进一步,在H-/H∞性能指标下设计了鲁棒后滤波器,保证残差(故障指示)信号在期望的故障灵敏度下满足对扰动的优化鲁棒性。最后,以三罐系统为例,验证了该方案的有效性和优越性。
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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