Reliability evaluation of AC/DC hybrid power grid considering transient security constraints

Can Wang, Haipeng Xie, Z. Bie, Chao-Bo Yan, Yanling Lin
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引用次数: 6

Abstract

With the rapid development of DC transmission technology and High Voltage Direct Current (HVDC) programs, the reliability of AC/DC hybrid power grid draws more and more attentions. The paper takes both the system static and dynamic characteristics into account, and proposes a novel AC/DC hybrid system reliability evaluation method considering transient security constraints based on Monte-Carlo method and transient stability analytical method. The interaction of AC system and DC system after fault is considered in evaluation process. The transient stability analysis is performed firstly when fault occurs in the system and BPA software is applied to the analysis to improve the computational accuracy and speed. Then the new system state is generated according to the transient analysis results. Then a minimum load shedding model of AC/DC hybrid system with HVDC is proposed. And then adequacy analysis is taken to the new state. The proposed method can evaluate the reliability of AC/DC hybrid grid more comprehensively and reduce the complexity of problem which is tested by IEEE-RTS 96 system and an actual large-scale system.
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考虑暂态安全约束的交直流混合电网可靠性评估
随着直流输电技术和高压直流输电技术的快速发展,交直流混合电网的可靠性问题越来越受到人们的关注。本文综合考虑了系统的静态和动态特性,提出了一种基于蒙特卡罗方法和暂态稳定分析方法的考虑暂态安全约束的交直流混合系统可靠性评估新方法。在评估过程中考虑了交流系统和直流系统在故障后的相互作用。在系统发生故障时首先进行暂态稳定分析,采用BPA软件进行分析,提高了计算精度和速度。然后根据暂态分析结果生成新的系统状态。在此基础上,提出了带HVDC的交直流混合系统的最小减载模型。然后对新状态进行充分性分析。通过IEEE-RTS 96系统和实际大型电网的测试,该方法可以更全面地评估交直流混合电网的可靠性,降低了问题的复杂性。
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