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具有离散输入和输出的系统的传感器与执行器故障诊断

Sensor and actuator fault diagnosis of systems with discrete inputs and outputs.

作者信息

Lunze J, Schröder J

机构信息

Institute of Automation and Computer Control, Ruhr-University Bochum, 44780 Bochum, Germany.

出版信息

IEEE Trans Syst Man Cybern B Cybern. 2004 Apr;34(2):1096-107. doi: 10.1109/tsmcb.2003.820593.

Abstract

The paper describes a method for detecting and identifying faults that occur in the sensors or in the actuators of dynamical systems with discrete-valued inputs and outputs. The model used in the diagnosis is a stochastic automaton. The generalized observer scheme (GOS), which has been proposed for systems with continuous-variable inputs and outputs some years ago, are developed for discrete systems. This scheme solves the diagnostic problem as an observation problem, which is set up here for discrete-event systems. As the system under consideration is described by a stochastic automaton rather than a differential equation, the mathematical background and the diagnostic algorithms obtained are completely different from the well-known observers developed for continuous-variable systems. The GOS is extended here by a fault detection module to cope with plant faults that are different from actuator or sensor faults. The diagnostic algorithm consists of two steps, the first detecting the existence of a fault and the second isolating possible sensor or actuator faults or identifying plant faults. The results are applied to quantized systems whose discrete inputs and outputs result from a quantization of the continuous-variable input and output signals. Experimental results illustrate the proposed diagnostic method.

摘要

本文描述了一种用于检测和识别动态系统传感器或执行器中出现的故障的方法,该动态系统具有离散值输入和输出。诊断中使用的模型是一个随机自动机。几年前针对具有连续变量输入和输出的系统提出的广义观测器方案(GOS)被扩展到离散系统。该方案将诊断问题作为一个观测问题来解决,此观测问题是针对离散事件系统设置的。由于所考虑的系统由随机自动机而非微分方程描述,所获得的数学背景和诊断算法与为连续变量系统开发的著名观测器完全不同。这里通过一个故障检测模块扩展了GOS,以应对与执行器或传感器故障不同的设备故障。诊断算法由两步组成,第一步检测故障的存在,第二步隔离可能的传感器或执行器故障或识别设备故障。结果应用于量化系统,其离散输入和输出是连续变量输入和输出信号量化的结果。实验结果说明了所提出的诊断方法。

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