海上风电场集成和频率支持控制利用混合多终端HVDC传输

Chenghao Li, P. Zhan, J. Wen, M. Yao, Naihu Li, Weijen Lee
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引用次数: 15

摘要

本文提出了一种混合多终端HVDC (MTDC)系统,将多个分布式海上风电场集成到陆上电网中。设计了陆上电网综合频率支持算法。介绍了典型的四端子系统的结构和工作原理。针对风电场侧vsc (wfvsc)和电网侧lcc (gslcc)提出了系统控制策略。为了获得平稳运行,WFVSCs被控制为电压源,自动吸收风电场产生的电力,并为风力涡轮机建立稳定的交流电压。直流电压电流降控制是为gslcc设计的,用于保持直流电压并在两个陆上电网之间分配电力。设计并试验了一种无辅助电源的公用事业黑启动过程。通过在PSCAD/EMTDC中进行仿真,验证了某陆上电网黑启动、变流器断开和频率变化时系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Offshore wind farms integration and frequency support control utilizing hybrid multi-terminal HVDC transmission
This paper proposed a hybrid multi-terminal HVDC (MTDC) system to integrate several distributed offshore wind farms to onshore power grids. And a comprehensive frequency support algorithm for onshore grid was designed. The configuration and operation principles of a typical 4 terminals system are described. A system control strategies are proposed for both wind farm side VSCs (WFVSCs) and grid side LCCs (GSLCCs). To obtain smooth operation, the WFVSCs are controlled as a voltage source that automatically absorbs power generated by the wind farm and establish a stable AC voltage for wind turbines. DC voltage-current droop control is designed for GSLCCs to maintain the DC voltage and distribute power between two onshore girds. A utility black start-up process without auxiliary power supply was designed and tested. The simulation results in PSCAD/EMTDC were presented to demonstrate the system performance during black starting-up, converter disconnection and frequency variation of one onshore power grid.
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