首页> 外文期刊>IEEE Transactions on Reliability >Reliability Estimation of src='/images/tex/348.gif' alt='k'> -out-of- src='/images/tex/388.gif' alt='n'> Pairs:G Balanced Systems With Spatially Distributed Units
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Reliability Estimation of src='/images/tex/348.gif' alt='k'> -out-of- src='/images/tex/388.gif' alt='n'> Pairs:G Balanced Systems With Spatially Distributed Units

机译: src =“ / images / tex / 348.gif” alt =“ k”> -out-of- 的可靠性估计src =“ / images / tex / 388.gif” alt =“ n”> 对:具有空间分布单元的G平衡系统

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摘要

The applications of -out-of- pairs:G Balanced systems with spatially distributed units are emerging in aerospace and military industries. A -out-of- pairs:G Balanced system has pairs of units distributed evenly in a circular configuration. The system operates when at least pairs of units operate in a balanced arrangement. The reliability estimation of such systems is important since their failures are most likely to result in losses in property and humans such as the case of unmanned aerial vehicles (UAVs) and balanced engine systems in planetary descent vehicles. In this paper we present methods for reliability estimation of different types of -out-of- pairs:G Balanced systems in two scenarios: 1) unbalanced systems are considered as failed and 2) unbalanced systems are rebalanced. We develop a systematic approach for enumerating the complete set of successful events, which are ordered sequences of failures described by system state transition paths, and obtain closed form expressions for calculating the probabilities of successful events. The developed methods can be easily generalized to other systems with spatially distributed units. It is found that there exists an optimal redundancy configuration for -out-of- pairs:G Balanced systems when unbalanced systems are considered as fai- ed; and that system reliability can be increased by rebalancing unbalanced system.
机译:成对应用:具有空间分布单元的G平衡系统正在航空航天和军事工业中兴起。成对出现:G平衡系统具有成对分布在圆形配置中的成对单元。当至少成对的单元以平衡布置运行时,系统运行。这种系统的可靠性估计很重要,因为它们的故障最有可能导致财产和人员损失,例如无人驾驶飞机(UAV)和行星下降飞机中的平衡发动机系统。在本文中,我们提出了用于不同类型的双绞线的可靠性估计的方法:G在两种情况下的平衡系统:1)不平衡系统被视为故障; 2)不平衡系统被重新平衡。我们开发了一种系统的方法来枚举成功事件的完整集合,这些事件是由系统状态转换路径描述的故障的有序序列,并获得用于计算成功事件概率的闭合形式表达式。所开发的方法可以很容易地推广到具有空间分布单元的其他系统。发现存在一种针对双绞线的最佳冗余配置:G当认为不平衡系统不可靠时,为平衡系统;通过重新平衡不平衡的系统可以提高系统的可靠性。

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