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Coordinated operation and control of VSC based multiterminal high voltage DC transmission systems

机译:基于VSC的多端子高压直流输电系统的协调运行和控制

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摘要

This paper deals with a multiterminal voltage source converter (VSC)-based high voltage dc transmission system (M-HVDC) connecting offshore wind farms to onshore ac grids. Three M-HVDC configurations studied, each with different control strategies. The voltage–current characteristics of VSCs are presented and VSC converter operation with different output powers from offshore wind farms is assessed. A generalized droop control strategy is mainly used to realize autonomous coordination among converters without the need of communication. Operation of the three configurations with respect to their control system is analyzed through PSCAD/EMTDC simulations and experimentation. Results show control performance during wind power change, eventual permanent VSC disconnection, and change in power demand from the ac grid side converter.
机译:本文研究了一种基于多端子电压源转换器(VSC)的高压直流输电系统(M-HVDC),该系统将海上风电场连接到陆上交流电网。研究了三种M-HVDC配置,每种配置都有不同的控制策略。介绍了VSC的电压-电流特性,并评估了海上风力发电场使用不同输出功率的VSC转换器的运行情况。通用的下垂控制策略主要用于实现转换器之间的自主协调,而无需通信。通过PSCAD / EMTDC仿真和实验分析了这三种配置相对于其控制系统的操作。结果显示了在风力变化,最终永久性VSC断开以及交流电网侧转换器的功率需求变化期间的控制性能。

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