Multiprocessor Fault-Tolerant Digital Control System

M. Kaye, R. Mullin, R. Doraiswami
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引用次数: 2

Abstract

A design and implementation of a fault-tolerant digital control system is proposed. The system incorporates 1) analytical redundancy based on Luenberger observers to detect, identify and monitor faults which occur in the controlled process such as sensor, actuator, A/D and D/A faults and excessive load torques and 2) triple modular redundancy of processors to provide tolerance to permanent and transient failures within the control computer such as component failures and on- board communication bus faults. The digital control system is implemented with three single board computers in a shared bus, common memory configuration. The operation of the proposed fault tolerant multiprocessor system was evaluated in real-time using an analog computer to simulate the process.
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多处理器容错数字控制系统
提出了一种容错数字控制系统的设计与实现方法。该系统包含1)基于Luenberger观察者的分析冗余,以检测,识别和监控控制过程中发生的故障,如传感器,执行器,A/D和D/A故障和过载负载扭矩;2)处理器的三重模块化冗余,以提供控制计算机内永久和短暂故障的容忍度,如组件故障和车载通信总线故障。数字控制系统是由三台单板计算机在共享总线上实现的,共用存储器配置。利用模拟计算机对该容错多处理机系统的运行过程进行了实时评估。
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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