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A BDD-based algorithm for reliability analysis of phased-mission systems

机译:基于BDD的相控系统可靠性分析算法

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This paper presents a new algorithm (PMS-BDD) based on the binary decision diagram (BDD) for reliability analysis of phased-mission systems (PMS). PMS-BDD uses phase algebra to deal with the dependence across the phases, and a new BDD operation to incorporate the phase algebra. Due to the nature of the BDD, cancellation of common components among the phases can be combined with the BDD generation, without additional operations; and the sum of disjoint products (SDP) can be implicitly represented by the final BDD. Several examples and experiments show that PMS-BDD is more efficient than the algorithm based on SDP, in both computation time and storage space; this efficiency allows the study of some practical, large phased-mission systems.
机译:本文提出了一种基于二元决策图(BDD)的相任务系统(PMS)可靠性分析的新算法(PMS-BDD)。 PMS-BDD使用相位代数来处理跨阶段的依赖性,并使用新的BDD操作来合并相位代数。由于BDD的性质,可以在BDD生成的过程中将阶段之间公共组件的取消合并在一起,而无需进行其他操作;最终BDD可以隐式表示不相交积的总和(SDP)。若干实例和实验表明,PMS-BDD在计算时间和存储空间上均比基于SDP的算法更有效。这种效率允许研究一些实用的大型相控系统。

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