首页> 外文会议>ASME/ISCIE international symposium on flexible automation 2012 >DESIGN AND VALIDATION OF FAULT DIAGNOSER BASED ON FINITE STATE AUTOMATON AND SEQUENTIAL FUNCTION CHART FOR PLC BASED MANUFACTURING SYSTEM
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DESIGN AND VALIDATION OF FAULT DIAGNOSER BASED ON FINITE STATE AUTOMATON AND SEQUENTIAL FUNCTION CHART FOR PLC BASED MANUFACTURING SYSTEM

机译:基于有限状态自动机和时序函数图的PLC制造系统故障诊断仪的设计与验证

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In ISFA-2010, we proposed a fault diagnoser design based on finite state automaton and sequential function chart to diagnose programmable logic controller (PLC) based manufacturing systems. A deficiency for that paper is that it only laid down a theoretical framework but lacking a detailed implementation and experiment validation. This paper aims at remedying the deficiency with detailed system design to diagnose discrete event system (DES) faults. Systematic diagnosis approach including modeling the plant, mapping output states with sensor readings, and designing diagnoser, was illustrated in this paper. The proposed diagnoser was implemented using Visual Basic to diagnose typical faults a PLC controlled dual robot arm. Experiment validation illustrated that the proposed diagnoser can detect and isolate DES equipment faults with a high fault detection rate of 93%, and detection rate of 80% when including product tolerance fault. The proposed diagnoser can achieve maximum fault detection delay of 9 seconds on the equipment faults. For the future direction, we are planning to extend the proposed diagnoser design to detect probabilistic faults in PLC based automated systems.
机译:在ISFA-2010中,我们提出了一种基于有限状态自动机和顺序功能图的故障诊断仪设计,以诊断基于可编程逻辑控制器(PLC)的制造系统。该论文的不足之处在于,它仅奠定了理论框架,却缺乏详细的实现和实验验证。本文旨在通过详细的系统设计来弥补缺陷,以诊断离散事件系统(DES)故障。本文阐述了系统的诊断方法,包括对工厂建模,使用传感器读数映射输出状态以及设计诊断程序。拟议的诊断程序是使用Visual Basic实现的,以诊断PLC控制的双机器人手臂的典型故障。实验验证表明,所提出的诊断工具可以发现和隔离DES设备故障,故障检出率高达93%,包括产品耐受性故障时检出率为80%。建议的诊断程序可以在设备故障上实现最大9秒的故障检测延迟。对于未来的方向,我们正计划扩展提出的诊断程序设计,以检测基于PLC的自动化系统中的概率故障。

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