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Reliability modeling of a computer system with preventive maintenance and priority subject to maximum operation and repair times

机译:具有预防性维护和优先级的计算机系统的可靠性建模受最长的操作和维修时间限制

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The main focus of this paper is on the reliability modelling of a computer system considering the concepts of redundancy, preventive maintenance and priority in repair activities. Two identical units of a computer system are taken-one unit is initially operative and the other is kept as spare in cold standby. In each unit h/w and s/w work together and may fail independently from normal mode. There is a single server who visits the syitem immediately as and when needed. Server conducts preventive maintenance of the unit (computer system) after a maximum operation time. Repair of the h/w is done at its failure while s/w is upgraded from time to time as per requirements. If server unable to repair the h/w in a pre-specific time (called maximum repair time), h/w is replaced by new one giving some replacement time. Priority to h/w repair is given over s/w up gradation if, in one unit s/w is under up-gradation and h/w fails in another operative unit. The failure time of h/w and s/w follows negative exponential distributions while the distributions of preventive maintenance, h/w repair/replacement and s/w up-gradation times are taken as arbitrary with different probability density functions. The expressions for several reliability and economic measures are derived in steady state using semi-Markov process and regenerative point technique. The graphical study of mean time to system failure (MTSF) and profit function has also been made giving particular values to various parameters and costs.
机译:本文的主要重点是考虑冗余,预防性维护和维修活动优先级的概念的计算机系统的可靠性建模。计算机系统有两个相同的单元,其中一个单元最初处于运行状态,另一个单元处于备用状态,以保持冷备用状态。在每个单元中,h / w和s / w一起工作,并且可能独立于正常模式而失败。有一个服务器可以在需要时立即访问系统。服务器在最长操作时间后对本机(计算机系统)进行预防性维护。硬件故障时进行维修,同时根据要求不时升级软件。如果服务器无法在预定的时间内修复硬件(称为最大修复时间),则将硬件替换为新的硬件,并提​​供一些替换时间。如果在一个单元中,s / w处于升级不足状态,而在另一个手术单元中,h / w失败,则优先进行硬件修复。 h / w和s / w的故障时间服从负指数分布,而预防性维护,h / w维修/更换和s / w升级时间的分布被视为具有任意概率密度函数的任意分布。利用半马尔可夫过程和再生点技术,推导了稳态下几种可靠性和经济措施的表达式。还进行了平均系统故障时间(MTSF)和利润函数的图形研究,为各种参数和成本提供了特定的值。

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