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A mathematical framework for reliability‐centered maintenance in microgrids

机译:微电网中以可靠性为中心的维护的数学框架

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摘要

In this paper, the central principles of reliability-centered maintenance (RCM) and corresponding mathematical concepts for its implementation in microgrids are discussed. A systematic framework is suggested that exploits the fundamentals of multiattribute decision making to (i) evaluate the important features and failure attributes and (ii) effectively identify the microgrid critical components with their failure rates dynamically assessed at various time intervals. Lagrange multipliers of a budget-constrained optimization formulation are suggested to be used to determine the desired values of system reliability indicators. The failure rates of critical components are efficiently determined over time through an exponential model that is empirically obtained via extracted condition scores of critical failure causes at multiple inspection times. A time-varying benefit-to-cost ratio mechanism is designed via which the useful lifetime of critical components and the system economic benefits increase through timely maintenance in microgrids where an improved reliability performance can be realized. Finally, the proposed model is implemented in a real-world scenario on a microgrid that is a part of the Tehran power distribution network. Extensive numerical results demonstrate the applicability and effectiveness of the suggested RCM model in microgrids.
机译:本文讨论了以可靠性为中心的维护(RCM)的中心原理以及在微电网中实施的相应数学概念。提出了一个系统框架,该框架利用多属性决策的基础来(i)评估重要特征和故障属性,以及(ii)有效识别微电网关键组件,并在各个时间间隔动态评估其故障率。建议使用预算受限的优化公式的拉格朗日乘数来确定系统可靠性指标的期望值。关键组件的故障率可以通过指数模型有效地确定,该指数模型是通过在多个检查时间通过提取关键故障原因的条件得分经验得出的。设计了随时间变化的成本效益比机制,通过及时维护微电网,可以提高关键组件的使用寿命和系统经济效益,从而可以提高可靠性。最后,所提出的模型是在作为德黑兰配电网络一部分的微电网的真实场景中实现的。大量的数值结果证明了建议的RCM模型在微电网中的适用性和有效性。

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