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Stochastic Systems with Reworking

机译:带返工的随机系统

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摘要

In a wide class of real systems an element resuming the mission execution after a failure must redo some portion of work already performed before the failure. The considered systems are used in computing, continuous production and communication. To reduce the amount of work that should be redone, data backup procedures are introduced. On one hand these procedures reduce the amount of work lost after the failures, on other hand they increase the total amount of work in the mission by adding the backup actions. This paper presents a state-space event transition based numerical algorithm for simultaneous evaluation of mission success probability, expected mission completion time, and cost for standby systems with reworking. Due to the non-monotonic effect of the backup distribution on the mission performance indices, we formulate and solve the optimal backup distribution problem considering different combinations of optimization objectives and constraints. In the case of standby systems with non-identical elements, the elements activation sequence can influence the mission performance significantly. Therefore, we also consider an optimal element sequencing problem in reworking systems.
机译:在各种各样的实际系统中,在故障后恢复任务执行的元素必须重做故障前已经执行的部分工作。所考虑的系统用于计算,连续生产和通信。为了减少应重做的工作量,引入了数据备份过程。一方面,这些程序减少了失败后丢失的工作量,另一方面,通过添加备用操作,它们增加了任务中的工作总量。本文提出了一种基于状态-空间事件转移的数值算法,用于同时评估任务成功概率,预期任务完成时间和带有返工的备用系统的成本。由于后备分配对任务绩效指标的非单调影响,我们考虑优化目标和约束的不同组合来制定和解决最优后备分配问题。在备用系统中元素不同的情况下,元素激活顺序会严重影响任务性能。因此,我们还考虑了返工系统中的最佳元素排序问题。

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