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首页> 外文期刊>International journal of electrical power and energy systems >Small-signal dynamics of hybrid LCC-VSC HVDC systems
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Small-signal dynamics of hybrid LCC-VSC HVDC systems

机译:混合LCC-VSC HVDC系统的小信号动力学

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摘要

This paper (i) develops a comprehensive small-signal dynamic model of a hybrid LCC-VSC HVDC link and (ii) based on eigen-analysis of the model, investigates the HVDC link dynamic modes and the impact of parameters on system dampings. Validity and accuracy of the small-signal (linear) dynamic model is verified based comparing the results with those from time-domain simulation in PSCAD/EMTDC platform. The eigen-analysis results show that (i) parameters of DC-current controller of LCC, DC-voltage controller of VSC, DC-side capacitor of VSC and smoothing reactor of LCC can highly affect the dampings of the oscillatory modes and even cause instability, and (ii) larger proportional and integral gains of VSC DC voltage control and smaller proportional and integral gains of LCC DC current controller can enhance dampings of dominant modes. The study also shows that larger DC-side capacitor and smoothing reactor of VSC, and smaller smoothing reactor of LCC may lead to oscillations/instability.
机译:本文(i)建立了混合LCC-VSC高压直流输电线路的综合小信号动态模型,并且(ii)基于该模型的本征分析,研究了高压直流输电线路的动态模式以及参数对系统阻尼的影响。通过将结果与PSCAD / EMTDC平台中时域仿真的结果进行比较,验证了小信号(线性)动态模型的有效性和准确性。本征分析结果表明:(i)LCC的直流电流控制器,VSC的直流电压控制器,VSC的直流侧电容器和LCC的平滑电抗器的参数会极大地影响振荡模式的阻尼,甚至导致不稳定。 (ii)VSC DC电压控制的比例和积分增益较大,而LCC DC电流控制器的比例和积分增益较小,可以增强主模的阻尼。研究还表明,较大的VSC直流侧电容器和平滑电抗器,以及较小的LCC平滑电抗器可能会导致振荡/不稳定。

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