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Comparative study of the efficiency and power density of offshore WECS with three-phase AC-link

机译:三相AC-link海上WECS效率和功率密度的比较研究

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In this paper three converter topologies are compared for the AC-AC conversion stage of an offshore wind turbine with permanent magnet synchronous generator. The WECS (Wind Energy Conversion System) is based on four stages: an input filter, an AC-AC converter, a three-phase high-frequency transformer and a full-bridge diode rectifier. The conventional back-to-back converter, the matrix converter and the indirect matrix converter are the three selected topologies. Analytical models and numerical simulations are considered in order to evaluate the WECS efficiency and power density as a function of the operational frequency of the transformer. It was found that for range of transformer frequencies from 100[Hz] to 10[KHz], the direct matrix converter topology was the most efficient topology and had the highest power density. In general, the back-to-back converter topology presents the lowest efficiency and power density in the range of frequencies considered.
机译:在本文中,针对具有永磁同步发电机的海上风力发电机的AC-AC转换阶段,比较了三种转换器拓扑。 WECS(风能转换系统)基于四个阶段:输入滤波器,AC-AC转换器,三相高频变压器和全桥二极管整流器。常规的背靠背转换器,矩阵转换器和间接矩阵转换器是三种选择的拓扑。考虑分析模型和数值模拟,以便根据变压器工作频率评估WECS效率和功率密度。发现在100 [Hz]至10 [KHz]的变压器频率范围内,直接矩阵转换器拓扑是最有效的拓扑,并且具有最高的功率密度。通常,背对背转换器拓扑在所考虑的频率范围内具有最低的效率和功率密度。

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