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首页> 外文期刊>Reliability Engineering & System Safety >Optimal structure of series system with 1-out-of-n warm standby subsystems performing operation and rescue functions
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Optimal structure of series system with 1-out-of-n warm standby subsystems performing operation and rescue functions

机译:具有操作和救援功能的1超高温备用子系统的串联系统的最佳结构

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摘要

This paper models an operation and rescue system where upon the failure of the operation system (if occurring), the rescue system is immediately activated to prevent the entire system loss or destruction. Both operation and rescue systems are series structures composed of 1 out-of-n warm standby subsystems. Different subsystems may have different redundancy levels, and components within each subsystem can be of heterogeneous types with different lifetime distributions and costs (due to purchasing from different vendors, different exploitation history or different work conditions). The operation system failure detection and switching system is not fully reliable. A numerical algorithm is first proposed to evaluate the mission success probability and survivability of the considered system. Further, we formulate and solve the optimal component allocation and sequencing problem (CASP), which finds the set of components from a pool of available component types for each warm standby subsystem and their activation sequence minimizing the total cost. The cost function optimized covers costs associated with mission failure, system loss or destruction, and system equipment. A chemical reactor example is provided to demonstrate the application of the proposed methodology as well as effects of different parameters on the evaluation and optimization results. A large example containing ten operation subsystems and four rescue subsystems is further analyzed to demonstrate computational efficiency of the proposed methodology. Example solutions show that the proposed methodology can facilitate a cost-effective design and operation of the considered operation/rescue system while achieving a balance between mission success probability and system survivability.
机译:本文模拟了操作系统(如果发生)失败的操作和救援系统,立即激活救援系统以防止整个系统丢失或破坏。操作和救援系统都是由1个超出N个温暖备用子系统组成的串联结构。不同的子系统可能具有不同的冗余级别,并且每个子系统内的组件可以是异构类型,具有不同的寿命分布和成本(由于从不同的供应商购买不同的开发历史或不同的工作条件)。操作系统故障检测和开关系统不完全可靠。首先提出了数值算法来评估考虑系统的任务成功概率和生存能力。此外,我们制定和解决最佳分量分配和排序问题(CASP),该问题来自可用组件类型的池中的每个温暖备用子系统的池和它们的激活序列最小化总成本。成本函数优化涵盖与特派团失败,系统丢失或破坏以及系统设备相关的成本。提供化学反应器示例以证明所提出的方法的应用以及不同参数对评估和优化结果的影响。进一步分析了包含十个操作子系统和四个救援子系统的一个大示例,以证明所提出的方法的计算效率。示例解决方案表明,所提出的方法可以促进考虑的操作/救援系统的经济有效的设计和操作,同时在使命成功概率和系统生存能力之间实现平衡。

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