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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Offshore Wind Farm Grid Integration by VSC Technology With LCC-Based HVDC Transmission
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Offshore Wind Farm Grid Integration by VSC Technology With LCC-Based HVDC Transmission

机译:VSC技术与基于LCC的HVDC输电技术整合海上风电场

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摘要

High-voltage dc (HVDC) transmission based on the line-commutated converter (LCC) is the most established and widespread technology around the world. However, HVDC based on the voltage source converter (VSC) has emerged as the best option to integrate renewable energy sources, e.g., offshore wind farms. This work investigates the feasibility of using a conventional LCC-HVDC transmission in combination with a VSC to integrate offshore wind farms. Such integration results in a hybrid HVDC connection, i.e., the connection of a VSC with an LCC through a dc cable. The operational features of a model of three-terminal hybrid HVDC, two LCC stations and one VSC station, is investigated using PSCAD/EMTDC. The simulations include an aggregate model to emulate the wind farm. The corresponding control strategies are proposed for each terminal and verified under various conditions including wind speed variations and ac faults.
机译:基于线路换向转换器(LCC)的高压直流(HVDC)传输是世界上最成熟,应用最广泛的技术。但是,基于电压源转换器(VSC)的HVDC已成为整合可再生能源(例如海上风电场)的最佳选择。这项工作研究了将常规LCC-HVDC输电与VSC结合使用以整合海上风电场的可行性。这种集成导致混合的HVDC连接,即VSC通过直流电缆与LCC的连接。使用PSCAD / EMTDC研究了三端混合HVDC,两个LCC站和一个VSC站的模型的操作特性。这些模拟包括一个汇总模型来模拟风电场。针对每个终端提出了相应的控制策略,并在包括风速变化和交流故障在内的各种条件下进行了验证。

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