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Analysis and optimal design of systems operating in a random environment and having a rescue option

机译:在随机环境中运行并具有救援选项的系统的分析和最佳设计

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摘要

The paper presents a model for a system exposed to a random environment characterized by the Poisson shock processes. A subset of the system components R-M is required for a mission completion. Failures of some components of this subset terminate a mission, whereas failures of other components are not terminal and allow for a rescue operation that is activated immediately upon failure. This operation is performed by a subset R-R of the system components and succeeds if all components from R-R survive all shocks occurring until its completion. The subsets R-M and R-R overlap. The duration of the rescue operation depends on the time of its activation. The components that are engaged only in the rescue operation remain in the warm standby mode during the primary mission. An approach for obtaining the mission success and the system survival probabilities is developed and an algorithm for the corresponding numerical computation is presented. An example analyzing the tradeoff between these two probabilities and illustrating optimization of the system protection design is given.
机译:本文提出了一个系统的模型,该系统暴露于以泊松冲击过程为特征的随机环境。完成任务需要系统组件R-M的子集。该子集中某些组件的故障会终止任务,而其他组件的故障不会终止,并且允许营救操作在发生故障后立即启动。此操作由系统组件的子集R-R执行,并且如果R-R中的所有组件都可以承受所有发生的冲击直到完成,则此操作成功。子集R-M和R-R重叠。救援操作的持续时间取决于其激活时间。在主要任务期间,仅用于救援操作的组件保持在热备用模式下。提出了一种获取任务成功率和系统生存概率的方法,并提出了一种用于数值计算的算法。给出了一个分析这两个概率之间的权衡并说明系统保护设计优化的示例。

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