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Analysis of a DC Collector-based Power Converter Topology for an Offshore Wind Farm

机译:基于DC集电极的海上风电场功率转换器拓扑分析

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The conventional collection grids for offshore wind farm consist of internal AC link comprising of series-parallel connections of identical wind energy conversion units (WECUs). Each WECU includes a 60- or 50-Hz power transformer. The power transformers are replaced by the power converters in this article. The weight of a power converter is much lower compared to that of a power transformer of similar characteristics, thus reducing the weight of the offshore wind farm. Most of the studies being done to design DC collection grids use the conventional full-bridge voltage source converter as the topology of power converter. The efficiency of the wind farm is low due to the switching losses. In this article a cascade connection of a diode rectifier and an interleaved DC-DC boost converter is used for the converter topology. The switches duty cycle is reduced, thus improving the efficiency of the wind farm. The dynamic model of the proposed power converter is derived, including its control schemes. Power Simulator (The Powersim, Rockville, USA) and MATLAB Software (The Math Works, Natick, Massachusetts, USA) are used to test the performances of the proposed converter model.
机译:用于海上风电场的常规收集网格由内部AC链路组成,该内部AC链路包括相同风能转换单元(WECU)的串联-并联连接。每个WECU均包含60或50 Hz的电源变压器。本文将电源变压器替换为电源转换器。与具有类似特性的电力变压器相比,电力转换器的重量要低得多,从而减轻了海上风电场的重量。设计直流收集电网的大多数研究都使用常规的全桥电压源转换器作为电源转换器的拓扑。由于切换损耗,风电场的效率很低。在本文中,二极管整流器和交错的DC-DC升压转换器的级联连接用于转换器拓扑。减少了开关的占空比,从而提高了风电场的效率。推导了所提出的功率转换器的动态模型,包括其控制方案。 Power Simulator(美国罗克维尔的Powersim)和MATLAB软件(美国马萨诸塞州内蒂克的Math Works)用于测试所提出的转换器模型的性能。

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