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首页> 外文期刊>Reliability, IEEE Transactions on >Reliability and Mission Cost of 1-Out-of- src='/images/tex/235.gif' alt='N'> :G Systems With State-Dependent Standby Mode Transfers
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Reliability and Mission Cost of 1-Out-of- src='/images/tex/235.gif' alt='N'> :G Systems With State-Dependent Standby Mode Transfers

机译:依赖状态的1-form-of- src =“ / images / tex / 235.gif” alt =“ N”> :G系统的可靠性和任务成本待机模式转移

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摘要

The paper proposes a new fault tolerant system design model, in particular a 1-out-of-:G hybrid redundant system with standby elements subject to state-dependent standby mode transfers. Specifically, in such systems, one standby element always resides in the hot standby mode, and thus is ready to replace the failed online element at any time to make the system dependable. If the online operating element or the hot standby element fails, one of the warm standby elements is immediately transferred to the hot standby mode. A numerical algorithm is first suggested for evaluating the reliability and the expected mission cost of the considered system. The algorithm is based on a discrete approximation of element time-to-failure distributions, and can work with any type of distribution. Furthermore, based on the suggested algorithm, the problem of optimal sequencing of standby elements initiation is formulated and solved. The objective of this optimization problem is to minimize the expected mission cost associated with elements' standby and operation expenses, as well as the mode transfer expenses, while meeting a certain system reliability constraint. Illustrative examples are provided.
机译:本文提出了一种新的容错系统设计模型,特别是一种带有备用元素且状态依赖的备用模式转换的1-out-of-G混合冗余系统。具体地说,在这样的系统中,一个备用元素始终处于热备用模式,因此随时准备替换发生故障的联机元素以使系统可靠。如果在线操作元素或热备用元素发生故障,则热备用元素之一将立即转换为热备用模式。首先提出了一种数字算法,用于评估所考虑系统的可靠性和预期任务成本。该算法基于元素失效时间分布的离散近似,并且可以使用任何类型的分布。此外,基于提出的算法,提出并解决了备用元件启动的最佳排序问题。该优化问题的目的是在满足一定的系统可靠性约束的同时,将与元件的待机和操作费用以及模式转换费用相关的预期任务成本降至最低。提供了说明性示例。

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