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Reliability assessments for two types of balanced systems with multi-state protective devices

机译:对具有多状态保护装置的两种平衡系统进行可靠性评估

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In the existing studies, the positive effects of a protective device on the reliability of balanced systems have not been attached importance, and the research on protective devices is limited and insufficient with respect to the triggering and protection mechanisms. Driven by practical engineering applications, this paper establishes two reliability models for balanced systems with multi-state protective devices from the perspectives of dynamic and static balanced concepts, respectively. The rebalanced mechanisms are considered in the proposed dynamic balanced system, and system imbalance is included in the failure criteria of the proposed static balanced system. In both models, new triggering mechanisms of protective devices are proposed based on the respective char-acteristics of the balanced systems. Moreover, variable protection mechanisms of the devices are proposed by introducing different reduction factors when the protective device operates in different stages. The protective devices reduce the integrated impact of shocks and internal degradation exerted on the units in the new models. The Markov process imbedding method combined with Monte-Carlo simulation is employed to derive the reli-ability of the proposed models. The applicability of proposed systems and correctness of the method are validated by practical engineering applications.
机译:在现有的研究中,保护装置对平衡系统可靠性的积极影响尚未得到重视,对保护装置的触发和保护机制的研究有限且不足。本文以实际工程应用为驱动,分别从动平衡概念和静态平衡概念出发,建立了两种多态保护装置平衡系统的可靠性模型。在所提出的动平衡系统中考虑了再平衡机制,并将系统不平衡纳入了所提出的静态平衡系统的失效准则中。在这两种模型中,都基于平衡系统各自的特性提出了新的保护装置触发机制。此外,当保护装置在不同阶段工作时,通过引入不同的折减系数,提出了装置的可变保护机制。保护装置减少了新型号中对装置施加的冲击和内部退化的综合影响。采用马尔可夫过程嵌入方法结合蒙特卡罗模拟,推导了所提模型的可靠性。通过实际工程应用验证了所提系统的适用性和正确性。

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