Quantitative and Qualitative Reliability Assessment of Reparable Electrical Power Supply Systems using Fault Tree Method and Importance Factors

Dallal Kemikem, M. Boudour, R. Benabid, K. Tehrani
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引用次数: 5

Abstract

For safety purpose, the electrical power supply system of a Nuclear Power Plants NPP must be reliable in all operation modes. The 1E safety class of NPP’s load can be supplied from various independent electrical sources namely: main power system (electrical grid), generator (house load operation), auxiliary power system and emergency power system (e.g. Diesel generator). In this paper, the quantitative and qualitative reliability assessment of electrical power supply system model of an NPP are performed using fault tree analysis (FTA) method and importance factors. The quantitative reliability assessment is based on the calculation of the failure probability obtained by the fault tree. Furthermore, the following importance factors: Fussel-Vesely (FV), Risk Reduction Worth (RRW) and Risk Achievement Worth (RAW) are used to identify the most important components in the system. In addition, the Minimal Cut Set (MCS) method is used as a tool for qualitative reliability assessment. The obtained results provide an insight on the reliability level of the power supply system as well as its important components. In practice, the electrical systems reliability can be improved using the appropriate techniques such as redundancy, diversity, inspection time optimization and so on.
基于故障树法和重要因子的可修供电系统可靠性定量和定性评估
出于安全考虑,核电站的供电系统在所有运行模式下都必须是可靠的。核电厂的1E级安全负荷可由各种独立电源供电,即:主电力系统(电网)、发电机(室内负荷运行)、辅助电力系统和应急电力系统(如柴油发电机)。本文采用故障树分析法和重要因子法对某核电站供电系统模型进行了定量和定性可靠性评估。定量的可靠性评估是基于故障树得到的故障概率的计算。此外,使用以下重要因素:Fussel-Vesely (FV), Risk Reduction Worth (RRW)和Risk Achievement Worth (RAW)来识别系统中最重要的组件。此外,将最小割集(MCS)方法作为定性可靠性评估的工具。所得结果对供电系统及其重要部件的可靠性水平提供了深入的了解。在实际应用中,采用适当的冗余、分集、优化检测时间等技术可以提高电气系统的可靠性。
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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