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Optimal Mission Abort Policy for Systems Operating in a Random Environment

机译:在随机环境中运行的系统的最佳任务中止策略

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摘要

Many real-world critical systems, e.g., aircrafts, manned space flight systems, and submarines, utilize mission aborts to enhance their survivability. Specifically, a mission can be aborted when a certain malfunction condition is met and a rescue or recovery procedure is then initiated. For systems exposed to external impacts, the malfunctions are often caused by the consequences of these impacts. Traditional system reliability models typically cannot address a possibility of mission aborts. Therefore, in this article, we first develop the corresponding methodology for modeling and evaluation of the mission success probability and survivability of systems experiencing both internal failures and external shocks. We consider a policy when a mission is aborted and a rescue procedure is activated upon occurrence of the mth shock. We demonstrate the tradeoff between the system survivability and the mission success probability that should be balanced by the proper choice of the decision variable m. A detailed illustrative example of a mission performed by an unmanned aerial vehicle is presented.
机译:许多现实世界中的关键系统,例如飞机,载人航天系统和潜艇,都利用任务中止来提高其生存能力。具体而言,当满足特定故障条件时,任务可以中止,然后启动救援或恢复程序。对于受到外部冲击的系统,故障通常是由这些冲击的后果引起的。传统的系统可靠性模型通常无法解决任务中止的可能性。因此,在本文中,我们首先开发相应的方法来对经历内部故障和外部冲击的系统的任务成功概率和生存性进行建模和评估。当发生第m次电击时,中止任务并启动救援程序时,我们会考虑采取一项政策。我们证明了系统可生存性与任务成功概率之间的权衡,应该通过正确选择决策变量m来进行权衡。给出了由无人机执行的任务的详细说明性示例。

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