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Operation and control of a current source converter series tapping of an LCC-HVDC link for integration of offshore wind power plants

机译:操作和控制用于集成海上风力发电厂的LCC-HVDC链路的电流源转换器系列分接

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摘要

This work presents a series tapping station for integrating Offshore Wind Power Plants (OWPP) into a (Line Commutated Converter High Voltage Direct Current) LCC-HVDC transmission system. The tapping station allows to integrate wind power resources without building a new HVDC link and it is based on a Current Source Converter (CSC). However, the CSC requires a minimum DC current to extract the power coming from the OWPP which may not be guaranteed depending on the power conditions of the HVDC corridor. For this reason, this paper proposes a coordinated operation and control of the CSC and the OWPP. A steady-state analysis is performed to determine the appropriate AC voltage level of the CSC. A power reduction algorithm is presented to limit power extraction during a reduction in the current of the HVDC transmission system and under loss of communications between the CSC and the OWPP. The proposed algorithm and the performance of the system are validated through simulation results.
机译:这项工作提出了一个串联分接站,用于将海上风力发电厂(OWPP)集成到(线路换向转换器高压直流电)LCC-HVDC输电系统中。分接站基于电流源转换器(CSC),无需建立新的HVDC链路即可集成风能资源。但是,CSC需要最小的直流电流来提取来自OWPP的功率,这可能无法保证,具体取决于HVDC走廊的功率条件。因此,本文提出了CSC和OWPP的协调运行和控制。进行稳态分析以确定CSC的适当AC电压水平。提出了一种功率降低算法,以在HVDC传输系统的电流降低期间以及CSC与OWPP之间的通信丢失的情况下限制功率提取。仿真结果验证了所提算法和系统性能。

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