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Joint optimization of mission abort and component switching policies for multistate warm standby systems

机译:多态保暖备用系统的关联优化中止和组件切换策略

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摘要

Safety-critical systems have been widely applied in various practical engineering fields to perform specific missions. Failures of such systems will lead to significant damage, thus, mission abort polices can be implemented to enhance system survivability. Warm standby is one of the most commonly used techniques in missioncritical and safety-critical systems to reduce failure risk during mission execution. Switching between working component and standby component is a feasible way to balance component degradation and extend system lifetime. Motivated by these results, we propose a joint optimization model that captures both component switching and mission abort policies for multistate warm standby systems. The optimal component switching and mission abort policies based on component condition are obtained to balance the trade-off between mission success probability and system survivability and to minimize the long-run expected total economic loss. A numerical study of virtual machine system is conducted to demonstrate the proposed model and obtained results.
机译:安全关键系统已广泛应用于各种实用工程领域,以执行特定的任务。这种系统的失败将导致重大损害,因此,可以实施任务中止策略以提高系统生存能力。温暖的待机是使命执行期间减少失败风险的Masscritical和安全关键系统中最常用的技术之一。在工作组件和备用组件之间切换是一种平衡分量劣化和扩展系统寿命的可行方法。通过这些结果,我们提出了一个联合优化模型,捕获多态温暖备用系统的组件切换和任务中止策略。基于组件状况的最佳组件切换和任务中止策略是为了平衡特派团成功概率和系统生存能力之间的权衡,并尽量减少长期预期的经济损失。进行了虚拟机系统的数值研究,以展示所提出的模型和获得的结果。

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