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Mission abort policy balancing the uncompleted mission penalty and system loss risk

机译:任务中止政策平衡了未完成的任务惩罚和系统损失风险

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摘要

Mission abort policy is an effective tool for enhancing survivability of many real-world systems when a failure during a mission results in a substantial economic loss. When continuation of a mission is associated with high risks, its primary task can be aborted and a rescue procedure can be initiated to enhance survivability, and therefore, to decrease losses. When the uncompleted tasks for the aborted mission are associated with monetary losses, the tradeoff between the possible losses associated with the uncompleted mission and with the system failure should be balanced. In this paper, we develop a methodology for evaluating the expected uncompleted fraction of a mission 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 if the mth shock occurs before time since the mission start. Then we demonstrate the tradeoff between the probability of a system loss and the expected uncompleted fraction of a mission and formulate the corresponding problem of the optimal choice of the decision variables m and xi. An illustrative example of a mission performed by an unmanned aerial vehicle is presented.
机译:当任务失败导致重大经济损失时,任务中止政策是增强许多实际系统生存能力的有效工具。当任务的继续存在高风险时,可以中止其主要任务,并可以启动救援程序以提高生存能力,从而减少损失。当中止任务的未完成任务与金钱损失相关联时,应平衡与未完成任务和系统故障相关的可能损失之间的折衷。在本文中,我们开发了一种方法,用于评估预期的任务未完成部分和经历内部故障和外部冲击的系统的生存能力。如果在任务执行开始前发生第m次电击,则在任务中止并启动救援程序时,我们会考虑采取一项政策。然后,我们证明了系统损失的概率与任务的预期未完成部分之间的折衷,并提出了决策变量m和xi最优选择的相应问题。提出了由无人机执行的任务的说明性示例。

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