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Remote diagnosis design for a PLC-based automated system: 2-evaluation of factors affecting remote diagnosis performance

机译:基于PLC的自动化系统的远程诊断设计:2-评估影响远程诊断性能的因素

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Troubleshooting performance in fault diagnosis tasks is commonly studied in various industrial applications. Several experiments were performed in previous studies to understand the ability of process interfaces to assist troubleshooters in local fault diagnosis while considering the effect of interface, nature of the failure, and the expertise of the troubleshooter. Although several remote diagnosis architectures have been proposed and standards have been developed for levels of remote diagnosis, the extent to which the design of a remote diagnosis architecture can assist a troubleshooter in diagnosis and the factors affecting remote troubleshooting performance have not been frequently addressed. The objective of this paper is to understand the factors that impact remote troubleshooting performance, including remote diagnosis architecture, type of failure, level of expertise of the remote troubleshooter, and skill level of the local operator. Experiments were performed in which troubleshooters used three levels of remote diagnosis architectures to diagnose different types of failures in a programmable logic controller-based discrete automated assembly system while working with local engineer and novice operators. The results suggest that for diagnosis of failures related to measured or monitored system variables by remote expert troubleshooters, remote troubleshooting performance improved with the increase in the levels of the remote diagnosis architectures. In contrast, in diagnosis of these failures by novice troubleshooters, no significant difference was observed between the three architectures in terms of remote troubleshooting performance, and the novice troubleshooters experienced problems with managing the increased information available. The experts exhibited better information gathering capabilities in that they spent more time per information source and made fewer transitions between information sources while diagnosing failures. Failures unrelated to monitored system parameters resulted in significantly reduced remote troubleshooting performance with all three architectures in comparison to the failures related to monitored system parameters for both expert and novice troubleshooters. The difference in terms of overall remote troubleshooting performance between engineer and novice operators was not found to be significant.
机译:在各种工业应用中通常研究故障诊断任务中的故障排除性能。在先前的研究中进行了一些实验,以了解过程接口协助故障排除人员进行本地故障诊断的能力,同时考虑接口的影响,故障的性质以及故障排除人员的专业知识。尽管已经提出了几种远程诊断体系结构,并且已经开发了用于远程诊断级别的标准,但是远程诊断体系结构的设计可以帮助故障诊断人员进行诊断的程度以及影响远程故障诊断性能的因素尚未得到经常解决。本文的目的是了解影响远程故障排除性能的因素,包括远程诊断体系结构,故障类型,远程故障排除人员的专业水平以及本地操作员的技能水平。在与本地工程师和新手操作人员合作的情况下,进行了实验,其中故障排除人员使用三级远程诊断体系结构来诊断基于可编程逻辑控制器的离散自动装配系统中的不同类型的故障。结果表明,对于由远程专家疑难解答程序诊断的与测量或监视的系统变量有关的故障,随着远程诊断体系结构级别的提高,远程疑难解答的性能得以提高。相反,在由新手疑难解答程序诊断这些故障时,就远程疑难解答性能而言,这三种体系结构之间没有观察到明显差异,并且新手疑难解答程序在管理增加的可用信息方面遇到了问题。专家展示了更好的信息收集功能,因为他们在诊断故障时花费每个信息源更多的时间,并在信息源之间进行较少的转换。与专家和新手疑难解答程序的与受监视系统参数有关的故障相比,与这三种架构无关的与受监视系统参数无关的故障导致远程故障排除性能大大降低。工程师和新手操作员之间在总体远程故障排除性能方面的差异并不明显。

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