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Optimization design on reliability of three-state electrical redundant system

机译:三态电冗余系统可靠性优化设计

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The methods of reliability analysis for parallel-redundant system are different from the traditional two-state system, according to multi-state reliability theory, the design of the three-state electrical parallel-redundant system was optimized, and a mathematical model of the reliable degree for the system was built. The formula of reliable degree was given by an example with usual three-state electrical parallel-redundant system. Researches indicated that it couldn't increase the reliability of the system even adopting the three-state electrical parallel-redundant system with more parallel-redundant branches because of the existence of short circuit failure. On the contrary, it would decrease the reliable degree of system with excessive branches. It differs from two-state system that the optimal redundancy is only 2 for the multi-branch redundancy design with auxiliary contacts of relay which often used in three-state electrical parallel-redundant system. The research results have universality, they are appropriate for electrical parallel-redundant system and the general three-state parallel-redundant system.
机译:并行冗余系统可靠性分析方法与传统的双状态系统不同,根据多态可靠性理论,优化了三种电气并行冗余系统的设计,以及可靠的数学模型建立了系统的学位。通过具有通常的三状态电平行冗余系统的示例给出可靠程度的公式。研究表明,由于存在短路故障,它无法提高系统的可靠性,甚至采用具有更平行冗余分支的三态电平行冗余系统。相反,它会降低具有过度分支的可靠性系统。它与两种状态系统不同,最佳冗余仅为多分支冗余设计2,具有中继的辅助触点,该辅助触点通常用于三个状态电平行冗余系统。研究结果具有普遍性,它们适用于电平行冗余系统和一般的三态并行冗余系统。

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