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首页> 外文期刊>Journal of power electronics >ESS equipped DFIG wind farm with coordinated power control under grid fault conditions
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ESS equipped DFIG wind farm with coordinated power control under grid fault conditions

机译:ESS配备了DFIG风电场,电网故障条件下具有协调功率控制

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摘要

A new structure for doubly fed induction generator (DFIG) wind farms with coordinated power control under grid fault conditions are proposed in this paper. The proposed structure uses one grid side converter (GSC) and one energy storage system (ESS) for the entire wind farm unlike conventional structures, which have one GSC for each of the DFIGs. A converter loss decrease and a reliability enhancement are some of the advantages of the proposed wind farm, under normal operating conditions. The proposed wind farm follows the new grid codes to remain connected to the grid. In addition, it supports the network voltage and frequency stability by generating reactive and active power during and after faults. The ESS is coordinated with the wind farm to generate smooth active power under normal operation. This improves the low voltage ride-through capability of the wind farm under-voltage fault conditions and enhances the frequency response of the wind farm under frequency faults. MATLAB/Simulink software was used to simulate the proposed wind farm structure. An experimental setup was also provided to test the operation of the proposed power circuit topology.
机译:本文提出了一种具有协调功率控制的双馈感应发电机(DFIG)风电场的新结构。所提出的结构使用一个网格侧转换器(GSC)和一个能量存储系统(ESS),而是与传统结构不同,其具有用于每个DFIG的一个GSC。转换器损耗减少和可靠性增强是拟议的风电场的一些优势,在正常操作条件下。建议的风电场遵循新的网格代码保持连接到电网。此外,它通过在故障期间和之后产生无功和有效功率来支持网络电压和频率稳定性。 ESS与风电场协调,在正常运行下产生平稳的有源功率。这改善了风电场欠压故障条件的低电压乘坐能力,并增强了频率故障下风电场的频率响应。 MATLAB / SIMULINK软件用于模拟所提出的风电场结构。还提供了一种实验设置以测试所提出的电源电路拓扑的操作。

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