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考虑电压动态过程的含电网换相换流器的高压直流输电小信号建模方法 被引量:2

LCC-HVDC Small Signal Modeling Method Considering Voltage Variation
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摘要 对含电网换相换流器的高压直流输电(line commu-tated converter high voltage direct current,LCC-HVDC)系统进行小信号稳定性分析时,存在小信号模型精度低、分析结果无法为系统稳定运行提供参考的问题。因此,提出一种计及电压动态过程的小信号建模方法。对LCC-HVDC状态空间模型进行改进,修正了逆变侧换流站内部的角度关系与换相角表达式,在模型中引入考虑电压动态过程的状态方程,并基于此模型计算系统运行的控制参数稳定域。通过PSCAD电磁暂态仿真软件对模型进行验证,并与传统小信号模型作对比,结果表明建立的考虑电压动态过程的小信号模型精度高,小信号稳定性分析结果更准确。 In the analysis on small signal stability of line com-mutated converter high voltage direct current(abbr.LCC-HVDC)power transmission system,there were such shortages as low accuracy of small signal model and the analysis result could not provide reference for stable operation of power trans-mission.For this reason,a small signal modeling method,which took dynamic process of voltage into account,was pro-posed to improve the state-space model of LCC-HVDC system and to revise the angle relationship inside the inverted side con-verter station as well as the expression of trigger angle.A new state equation considering the dynamic process of voltage was led in the model,and based on this model the stability domain of control parameters for system operation was calculated.The proposed model was verified by PSCAD electromagnetic tran-sient simulation and the obtained results were compared with that by traditional small signal model.Comparison results show that established small signal model possesses higher precision and the analysis results for small signal stability by the pro-posed model are of higher precision.
作者 李至峪 李欢 魏伟 刘崇茹 LI Zhiyu;LI Huan;WEI Wei;LIU Chongru(State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources(North China Electric Power University),Changping District,Beijing 102206,China;State Key Laboratory of HVDC(Electric Power Research Institute China Southern Power Grid),Guangzhou 510663,Guangdong Province,China)
出处 《现代电力》 北大核心 2022年第3期262-269,共8页 Modern Electric Power
基金 南方电网公司科技项目(ZBKJXM20180104)。
关键词 高压直流输电 小信号模型 电压变化 换流站模型 稳定域 HVDC transmission small signal model voltage variation converter station model stability region
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