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Analysis of a Standby System with Dissimilar Components and Imperfect Repair

机译:零件不相同且维修不完善的备用系统分析

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摘要

Operating systems do not perform their intended functions as time passes and ultimately fail due the failure of one or more of their parts, units, or components. Failure is caused by many factors such as age, deterioration, wear and tear, leakage, and lack of proper and timely maintenances. Failed components are usually replaced if not expensive or critical; otherwise repaired. Repair can be perfect, minimal, or imperfect; the selection of a specific repair option is dependent on the desire of the decision maker and the capability of the repairing staff/facilities. In this paper, imperfect repair is applied where a failed component is repaired several times before complete replacement. The system in this study consists of two dissimilar (non-identical) components, one in operation and the other in cold standby; each component has a different failure and repair rate depending on time spent in operation. The performance of the system is measured using steady state availability. A numerical example is presented to illustrate and compare the performance and cost of two versions of the system, the first version with two dissimilar components, and the second with two similar and new components.
机译:随着时间的流逝,操作系统无法执行其预期的功能,并且由于其一个或多个部件,单元或组件的故障而最终导致故障。故障是由许多因素引起的,例如老化,老化,磨损,泄漏,缺少适当和及时的维护。如果不昂贵或不重要,通常会更换发生故障的组件。否则修复。修复可以是完美的,最小的或不完美的;具体维修选项的选择取决于决策者的需求以及维修人员/设施的能力。在本文中,不完善的修复方法适用于在完全更换之前先对发生故障的组件进行多次修复的方法。本研究中的系统由两个不同的(不同的)组件组成,一个组件在运行中,另一个组件在冷备用中;根据使用时间的不同,每个组件的故障和修复率也不同。系统的性能是使用稳态可用性来衡量的。给出了一个数值示例,以说明和比较系统的两个版本的性能和成本,第一个版本具有两个不同的组件,第二个版本具有两个相似和新的组件。

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