System-Level Reliability Analysis of a Repairable Power Electronic-Based Power System Considering Non-Constant Failure Rates

A. Davoodi, Yongheng Yang, T. Dragičević, F. Blaabjerg
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引用次数: 3

Abstract

Conventionally, for reliability studies in power systems, a constant failure rate is assumed for power generation units. If these units consist of power electronic converters, this assumption might not be valid due to the aging of power components, and it will lead to an unrealistic prediction of reliability. On the other hand, at the system-level, commonly-used reliability calculation tools, such as Monte Carlo Simulation (MCS) and Continuous Markov Process (CMP), are either time-consuming or not possible to be applied to the systems with non-constant failure rates. Therefore, in this paper, a methodology is proposed to calculate system-level reliability for a Power-Electronic-based Power System (PEPS), consisting of several converters with non-constant failure rates. By doing so, not only is the effect of mission profiles integrated into the system-level reliability model, but also the wear-out failures and corrective maintenance are considered. Finally, for a case study PEPS, the system-level indices are calculated using the proposed method. It is shown that assuming constant failure rates for PEPS units is inaccurate and misleading. Moreover, the impacts of various factors, e.g., mission profile, repair rate, topology, and rating of converters, on the system-level reliability are investigated and analyzed.
考虑非恒定故障率的可修电力电子电力系统系统级可靠性分析
在电力系统可靠性研究中,通常假设发电机组的故障率是恒定的。如果这些装置由电力电子转换器组成,由于电力元件的老化,这种假设可能不成立,并且会导致对可靠性的不切实际的预测。另一方面,在系统级,常用的可靠性计算工具,如蒙特卡罗模拟(MCS)和连续马尔可夫过程(CMP),要么耗时,要么不可能应用于具有非恒定故障率的系统。因此,本文提出了一种计算电力电子电力系统(PEPS)系统级可靠性的方法,该系统由多个具有非恒定故障率的变流器组成。通过这样做,不仅将任务剖面的影响集成到系统级可靠性模型中,而且考虑了磨损故障和纠正维护。最后,以PEPS为例,采用该方法计算了系统级指标。结果表明,假设PEPS装置的故障率恒定是不准确和误导的。此外,还研究和分析了任务剖面、维修率、拓扑结构和变流器等级等因素对系统级可靠性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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