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Reliability assessment of complex system consisting two subsystems connected in series configuration using Gumbel-Hougaard family copula distribution

机译:使用Gumbel-Hougaard族copula分布对包括串联连接的两个子系统的复杂系统的可靠性评估

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This paper focused on the study of reliability measures of the complex system consist of two subsystems, (subsystem-1 and subsystem-2), both connected in series. Subsystem-1 has four units in a parallel configuration and working under 2-out-of-4: G; policy. The subsystem-2 has one unit; both the subsystems are connected in a series configuration. The system has three types of failure, minor partial failure, major partial failure, and complete failure. It is assumed that the minor and major partial failures bring the system in the degraded state, while the complete failure mode stops working of the system. All failure rates are constant and assumed to follow an exponential distribution, but the repair follows two types of distribution, general distribution, and Gumbel-Hougaard family copula (Joint probability distribution). The system is analyzed by employing supplementary variable and Laplace transform. The various measures of system reliability such as Availability, Reliability, and Mean time to failure (MTTF), profit analysis have been obtained. Critical examinations of the system have been made throughout the work. The computed results have been demonstrated by graph and utility of analysis have been conveyed through conclusion section.?.
机译:本文着重研究复杂系统的可靠性度量,该系统由两个子系统(子系统1和子系统2)组成,两个子系统串联。子系统1具有四个并行配置的单元,并在4分之2中工作。政策。子系统2有一个单元。两个子系统以串联配置连接。系统具有三种类型的故障:次要部分故障,主要部分故障和完全故障。假定次要和主要的部分故障会使系统处于降级状态,而完全故障模式将使系统停止工作。所有故障率都是恒定的,并假定遵循指数分布,但是修复遵循两种类型的分布:一般分布和Gumbel-Hougaard族系动词(联合概率分布)。通过使用补充变量和拉普拉斯变换来分析该系统。已经获得了各种系统可靠性度量,例如可用性,可靠性和平均故障时间(MTTF),利润分析。在整个工作过程中都对该系统进行了严格的检查。计算结果已通过图形进行了演示,分析的效用已通过结论部分传达。

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