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Cost-benefit analysis of a reliability model on water process system having two types of redundant subsystems

机译:具有两种冗余子系统的水处理系统可靠性模型的成本效益分析

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In this paper a reliability model on a water system working in Panipat Thermal Plant, Panipat is considered. It was observed while visiting the plant that the system is consist of several redundant and non-redundant sub-systems where redundant sub-systems are of two types i.e. 1-out-of-2 (type-I) and 2-out-of-3 (type-II). On the occurrence of a minor fault in any subsystem the system goes to partial failure whereas on occurrence of a major fault in the non-redundant subsystem it completely fails. On partial failure of the system, the repairman available first inspects whether the fault is in redundant subsystem or in non-redundant subsystem and accordingly carries out the repair of the subsystem involved. Various measures of system effectiveness are obtained by using Markov processes and regenerative point technique. Using these measures the system is analysed in terms of its reliability and cost and various conclusions are drawn on the basis of the graphical studies.
机译:本文考虑了帕尼帕特(Panipat)热电厂工作水系统的可靠性模型。在访问工厂时观察到,该系统由几个冗余和非冗余子系统组成,其中冗余子系统有两种类型,即2种之一(I型)和2种之外的2种。 -3(II型)。在任何子系统中发生次要故障时,系统都会部分失效;而在非冗余子系统中发生次要故障时,系统将完全失效。在系统部分故障时,可用的维修人员首先检查故障是在冗余子系统中还是在非冗余子系统中,并相应地对所涉及的子系统进行维修。通过使用马尔可夫过程和再生点技术可以获得系统有效性的各种度量。使用这些措施对系统进行了可靠性和成本方面的分析,并在图形研究的基础上得出了各种结论。

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