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Hierarchical Reliability Evaluation to Security and Stability Control System of Power Systems

机译:电力系统安全稳定控制系统的分层可靠性评估

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摘要

The security and stability control system is the 2nd defense for the power system. Its reliability is critical to the normal operation of power systems, which is studied with the case of a practical stability control device in this paper. Based on the hardware configuration and control strategies, the fault tree analysis (FTA) is applied to derive the hierarchical modeling. Probabilistic analysis based on the logic of the unavailable events is performed to quantify the reliability of the device. The absolute and relative sensitivities are introduced to quantify the parametric sensitivities and find the vulnerable modules possibly yielding unavailability of the stability control device. The numerical results are provided to validate the feasibility and accuracy of the proposed model. The study is beneficial to power system stability and security.
机译:安全稳定控制系统是电力系统的第二道防线。它的可靠性对于电力系统的正常运行至关重要,本文以实用的稳定性控制装置为例对其进行了研究。基于硬件配置和控制策略,应用故障树分析(FTA)来推导分层建模。基于不可用事件的逻辑进行概率分析,以量化设备的可靠性。引入绝对和相对灵敏度来量化参数灵敏度,并找到可能导致稳定性控制设备不可用的易损模块。数值结果证明了所提模型的可行性和准确性。该研究有益于电力系统的稳定性和安全性。

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