利用分量重要性测度改善多状态相干系统的性能

Q3 Business, Management and Accounting
S. Roychowdhury, D. Bhattacharya
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引用次数: 2

摘要

概要摘要在系统工程中,为了在二进制设置下提高系统性能,已经做出了许多努力,其中每个组件以及整个系统都具有两种状态中的任何一种;即功能完善和完全失效。然而,有些系统以不同的性能级别执行任务,而不是仅以上述两个性能级别运行。这些系统是多状态系统。在这些系统中,在系统达到完全故障状态之前,可能存在一些部分工作状态或性能级别。因此,人们认为有必要开发程序来提高由多状态组件组成的多状态系统的性能。本文使用多状态组件重要性度量来解决多状态系统的此类问题。此处开发的度量用于评估单个组件对系统性能改进的影响。发展了处理齐次多状态相干系统的一些基本理论,最后,利用重要性测度导出了提高系统性能的规则。通过一个实际的例子说明了结果的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Improvement of a Multi-State Coherent System using Component Importance Measure
SYNOPTIC ABSTRACT In system engineering, numerous efforts have been made for achieving improvement in system performance under a binary set up, where each component, as well as the entire system, has any one of two states; namely, perfect functioning and complete failure. However, there are systems which perform their tasks at various performance levels rather than functioning at only the above two performance levels. These systems are multi-state systems. In these systems, there can be some partially working states or performance levels before the system comes to the state of complete failure. Hence, the need has been felt to develop the procedures for improving the performance of multi-state systems consisting of multi-state components. This article resolves such an issue for a multi-state system using a multi-state component importance measure. The measure developed here is used to assess the impact of individual components on the improvement of system performance. Some basic theory to deal with a homogeneous multi-state coherent system has been developed, and finally, a rule has been derived to improve system performance using the importance measure. The applications of the results have been illustrated through a real-life example.
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来源期刊
American Journal of Mathematical and Management Sciences
American Journal of Mathematical and Management Sciences Business, Management and Accounting-Business, Management and Accounting (all)
CiteScore
2.70
自引率
0.00%
发文量
5
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