基于VSC的直流输电系统控制器设计及稳定性分析

Garima Singh
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引用次数: 3

摘要

与传统的高压直流输电相比,基于VSC的高压直流输电链路的主要优势是它在整流器和逆变器两端都具有可控性。直流电压、交流电压、频率、有功功率和无功功率均可任意控制。在此基础上,对基于VSC的两端直流输电系统进行了稳定性分析。为了将基于VSC的HVDC链路集成到由大型风电场和其他工业系统组成的网络中,对基于VSC的链路进行了暂态稳定性、电压稳定性和频率稳定性检查。所有仿真均使用MATLAB进行。进一步研究了链路的小信号稳定性,保证了链路在小扰动下的稳定性。在此分析中,考虑了无损耗变换器和有损耗变换器两种情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controller design and stability analysis of VSC based HVDC transmission system
The chief advantage of VSC based HVDC links over conventional HVDC is the controllability it offers on both the rectifier and inverter ends. The DC voltage, AC voltage, frequency, active and reactive power can be controlled on either side, which has been studied. Thereafter, stability analysis for the two- terminal VSC based HVDC transmission system is performed. For the integration of VSC based HVDC links into the networks consisting of large wind farms and other industrial systems, the VSC based link has been checked for transient stability, voltage stability and frequency stability. All simulations are performed using MATLAB. Further, small signal stability of the link is studied to ensure that it is stable under small disturbances. For this analysis, both cases of lossless converter and converter with losses are considered.
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