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Control strategy to improve power transmission capacity from wind farms to weak AC grids

机译:控制策略,提高风电场到弱交流电网的动力传输能力

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With the increasing connection of large wind farms based on direct driven Permanent Magnet Synchronous Generators (PMSGs) to weak AC grids, the steady state characteristics of such wind farms, particularly those connected to very weak AC systems with a Short Circuit Ratio (SCR) of 1, are important factors for analysis with a view to improvement. In this paper, the issue is thus analysed in order to identify the factors limiting transfer capability from wind farm output. This paper thus presents a simulation model of a wind farm connected to a very weak AC grid, and a vector control strategy is used with respect to the full power converters of the wind farm in order to track current order injected from the converters into the AC system. A supplementary outer loop control is proposed to support grid voltage and to maximise transferred power into the very weak AC grid, based on a droop gain which is allowed to update the reactive power reference for reactive power control for the grid side converter based on changes to the output of the wind turbine, within grid code requirements. The simulation results prove that the proposed control system offers a promising method for addressing challenges arising in active power transmission, and thus increasing transferred active power from such wind farms to very weak grids.
机译:随着基于直接驱动的永磁场同步发电机(PMSG)的大型风电场的增加,弱交流电网,这种风电场的稳态特性,特别是那些具有短路比(SCR)的短路比(SCR)的弱交流系统。 1,是分析的重要因素,以改善。本文分析了该问题,以确定限制风电场产出的转移能力的因素。因此,本文介绍了连接到非常弱的AC电网的风电场的仿真模型,并且相对于风电场的全功率转换器使用矢量控制策略,以跟踪从转换器注入的电流顺序进入AC系统。提出了一种补充外环控制以支持电网电压并基于允许基于对电网侧转换器的无功功率控制的防振功率参考来最大化转移到非常弱的AC电网。在网格代码要求中的风力涡轮机的输出。仿真结果证明,该控制系统提供了一种有希望的方法,用于解决有源电力传输中出现的挑战,从而增加了从这种风电场到非常弱网格的转移的活力。

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