Power sensitivity and algebraic technique for evaluation of penetration level of photovoltaic on DC link of VSC HVDC transmission

A. Nnachi, J. Munda, D. Nicolae, A. M. Mabwe
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引用次数: 4

Abstract

With the increased advent of VSC HVDC with long DC transmission link in power systems, situations have arisen and will be even more frequent in the future, where several distributed generation will be connected on the DC-link for more power transfer capability. As penetration level increases, there is need to predict the limit before violation of voltage and power instability on the DC transmission link and ensure that it does not interfere with the main VSC HVDC system control. In this paper, power sensitivity and algebraic technique is proposed to predict the maximum DG penetration that can be accepted at a particular location on the dc link of VSC HVDC transmission system before violation of voltage and power stability.
光伏在VSC直流输电直流链路上渗透水平评估的功率灵敏度及代数技术
随着长直流输电链路的VSC高压直流在电力系统中的应用越来越多,在直流链路上连接多个分布式发电机组以获得更大的输电能力的情况已经出现,并且在未来会更加频繁。随着渗透水平的提高,需要预测直流输电链路电压和功率失稳发生前的极限,并保证其不干扰主VSC直流系统的控制。本文利用功率灵敏度和代数技术,预测了在电压和电力稳定发生破坏前,VSC直流输电系统直流链路上某位置可接受的最大DG穿透量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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