Analysis of Surplus Power Dissipation Strategy of Flexible DC Transmission System Based on Energy Dissipation Resistance

Chao Wang, Weidong Chen, Jianyuan Xu, Xinwei Li, Wansong Liu, Jiayi Ma
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Abstract

F1exible DC transmission system plays an important role in new energy delivery and power system interconnection. This paper proposes a surplus power dissipation strategy for a flexible DC transmission system based on energy dissipation resistors. Aiming at the active power balance of the flexible DC transmission system, the traditional energy dissipation resistors at the DC side are divided into multiple modules that can be independently input and controlled, and the surplus power fed into the flexible DC transmission system by the converter station at the feed end is consumed. That is, the unbalanced power caused by the fault of the receiver on the AC side of the flexible DC transmission is consumed. The energy dissipation resistance on the DC side of the flexible DC transmission system is used to transplant the unbalanced power of the receiver grid, which can prevent the overcurrent accident caused by the fault of the communication system and achieve the purpose of power balance in the flexible DC transmission system. Keywords Flexible DC transmission system; HVDC system; style; energy dissipation resistance. The paper needs massive proof-reading. It is difficult to understand most of the explanations provided in the paper.
基于消能阻力的柔性直流输电系统剩余功耗策略分析
柔性直流输电系统在新能源输送和电力系统互联中发挥着重要作用。提出了一种基于消能电阻的柔性直流输电系统剩余功耗策略。针对柔性直流输电系统的有功功率平衡,将直流侧的传统耗能电阻划分为多个可独立输入和控制的模块,将馈电端换流站馈入柔性直流输电系统的剩余功率消耗掉。即消耗直流柔性输电交流侧接收端故障造成的不平衡功率。柔性直流输电系统直流侧的耗能电阻用于移植接收电网的不平衡功率,可以防止通信系统故障引起的过流事故,达到柔性直流输电系统功率平衡的目的。柔性直流输电系统;直流系统;风格;能量耗散阻力。这篇论文需要大量的校阅。这篇论文中提供的大部分解释都很难理解。
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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