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Analysis of Commutation Failure in Multi-Infeed HVDC System under Different Load Models

机译:不同负荷模型下的多馈直流输电系统换相失败分析

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HVDC technology has been widely used in modern power system. On one hand, HVDC has the advantages of economy, high efficiency and strong controllability. While on the other hand, it makes the dynamic characteristics of the power system becoming more and more complex. That puts forward a new challenge to system stability and raises new questions for power system simulation. This paper focuses on the interaction between AC and DC systems, especially the problem of commutation failure caused by AC system fault. Based on the data of China Southern Power Grid, this paper calculates the fault regions that may cause commutation failure and calculates the system critical clearance time under different load models, analyzes the impacts of different load models on commutation failure and the stability of AC/DC hybrid system.
机译:高压直流输电技术已被广泛应用于现代电力系统中。一方面,高压直流输电具有经济,高效,可控性强的优点。另一方面,它使电力系统的动态特性变得越来越复杂。这给系统稳定性提出了新的挑战,并为电力系统仿真提出了新的问题。本文着重研究交直流系统之间的相互作用,特别是交流系统故障引起的换相失败问题。根据南方电网的数据,计算出可能引起换相失败的故障区域,并计算出不同负荷模型下的系统临界间隙时间,分析了不同负荷模型对换相失败和交直流稳定性的影响。混合动力系统。

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