基于VSC的背靠背高压直流线路动态分析与仿真

A. Tyagi, K. Padiyar
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引用次数: 8

摘要

本文对基于背靠背(BTB)高压直流链路的电压源变换器(VSC)进行了建模和分析。案例研究考虑了对有功、无功功率变化和单线接地(SLG)故障扰动的响应。每个终端的控制器设计用于注入可变(幅度和相位角)正弦,平衡电压集来调节/控制有功和无功功率。也可以通过控制注入的无功功率来调节转换母线(AC)电压。采用d-q模型(忽略VSC输出电压中的谐波)和三相VSC详细模型进行分析。特征值分析和控制器设计基于d-q模型,暂态仿真同时考虑了这两种模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic analysis and simulation of a VSC based Back-to-Back HVDC link
This paper presents the modeling and analysis of a voltage source converter (VSC) based back-to-back (BTB) HVDC link. The case study considers the response to changes in the active and reactive power and disturbance caused by single line to ground (SLG) fault. The controllers at each terminal are designed to inject a variable (magnitude and phase angle) sinusoidal, balanced set of voltages to regulate/control the active and reactive power. It is also possible to regulate the converter bus (AC) voltage by controlling the injected reactive power. The analysis is carried out using both d-q model (neglecting the harmonics in the output voltages of VSC) and three phase detailed model of VSC. While the eigenvalue analysis and controller design is based on the d-q model, the transient simulation considers both models.
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