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Switching System's MLE Based Transient Stability Assessment of AC/DC Hybrid System Considering Continuous Commutation Failure

机译:考虑连续换向故障的AC / DC混合系统的交换系统的MLE基于Mle的瞬态稳定性评估

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摘要

The commutation failure of Line Commutated Converter-High Voltage Direct Current (LCC-HVDC) cannot be avoided. This paper presents a novel transient stability assessment approach for AC/DC hybrid system considering continuous commutation failure. First, the conception and mathematical background of Maximum Lyapunov Exponent (MLE) of switching system is introduced, and the switching compensation matrix is derived. Next, the switching system model of AC/DC hybrid system considering continuous commutation failure caused by AC faults is established. On the basis of switching compensation, the MLE of switching system is calculated accurately, and the MLE based criteria are proposed to assess the transient stability of the switching system. Finally, the modified 39-bus system with LCC-HVDC added and the real power system are used as test systems to investigate the validity and effectiveness of the proposed transient stability assessment approach.
机译:无法避免采用线路换向转换器高压直流(LCC-HVDC)的换向故障。本文介绍了考虑连续换向故障的AC / DC混合系统的新型瞬态稳定性评估方法。首先,引入了开关系统的最大Lyapunov指数(MLE)的概念和数学背景,并导出了切换补偿矩阵。接下来,建立了考虑交流故障引起的连续换向故障的AC / DC混合系统的开关系统模型。在切换补偿的基础上,精确计算开关系统的MLE,并提出了基于MLE的标准来评估开关系统的瞬态稳定性。最后,添加了具有LCC-HVDC的改进的39总线系统和实际电源系统用作测试系统,以研究所提出的瞬态稳定性评估方法的有效性和有效性。

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