连续时间网络控制系统的触发式故障检测滤波器设计

Event-Triggered Fault Detection Filter Design for a Continuous-Time Networked Control System

IEEE Transactions on Cybernetics · 2016
被引 238 · 同刊同年前 8%
ABS 3

中文导读

研究了连续时间网络控制系统中,考虑传感器偏差故障和网络延迟丢包的事件触发故障检测滤波器与控制器协同设计问题,提出基于带宽利用率和故障概率的事件触发机制,并采用新方法降低保守性。

Abstract

This paper studies the problem of event-triggered fault detection filter (FDF) and controller coordinated design for a continuous-time networked control system (NCS) with biased sensor faults. By considering sensor-to-FDF network-induced delays and packet dropouts, which do not impose a constraint on the event-triggering mechanism, and proposing the simultaneous network bandwidth utilization ratio and fault occurrence probability-based event-triggering mechanism, a new closed-loop model for the considered NCS is established. Based on the established model, the event-triggered H <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">∞</sub> performance analysis, and FDF and controller coordinated design are presented. The combined mutually exclusive distribution and Wirtinger-based integral inequality approach is proposed for the first time to deal with integral inequalities for products of vectors. This approach is proved to be less conservative than the existing Wirtinger-based integral inequality approach. The designed FDF and controller can guarantee the sensitivity of the residual signal to faults and the robustness of the NCS to external disturbances. The simulation results verify the effectiveness of the proposed event-triggering mechanism, and the FDF and controller coordinated design.

网络控制系统故障检测事件触发机制滤波器设计