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Comparative analyses of DC collection grid based power converter topologies for offshore wind farm

机译:基于DC收集网格的海上风电场功率变换器拓扑结构的比较分析

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High voltage direct current (HVDC) system has gained number of applications in offshore wind farm, and the majority of studies that are being conducted on the HVDC system focus most on the transmission line; where HVDC contributes efficiently to power conditioning, compensation, and power filtering. This paper investigates the use of DC system for the design of power generating plant of the offshore wind farm; or DC collection grid for a wind farm. Recent studies have contributed a lot in this direction. A DC collection grid system can be provided through series or parallel interconnection of wind energy conversion units (WECUs); each conversion unit includes a wind-turbine-generator and a power converter. The studies that are being done on the design of DC collection grid for wind farm use the full-bridge voltage source converter (VSC) as the topology of power converter. This paper describes some advantages and drawbacks of using the full-bridge VSC layout. The paper proposes another topology which is the single-controlled-switch converter. Comparison of these systems is done in terms of control performance and power loss. The dynamics of the WECU circuits is modelled and analysed. Power Simulator (PSim) and Matlab software are used to test the results.
机译:高压直流(HVDC)系统已经在海上风电场中得到了广泛的应用,并且有关HVDC系统的大多数研究都集中在输电线路上。 HVDC可有效地进行功率调节,补偿和功率滤波。本文研究了直流系统在海上风电场发电站设计中的应用。或风电场的直流收集电网。最近的研究在这个方向上做出了很多贡献。可以通过风能转换单元(WECU)的串联或并联互连来提供DC收集电网系统。每个转换单元包括风力发电机和功率转换器。风电场直流收集电网的设计研究使用全桥电压源转换器(VSC)作为电源转换器的拓扑。本文介绍了使用全桥VSC布局的一些优缺点。本文提出了另一种拓扑结构,即单控开关转换器。这些系统的比较是在控制性能和功耗方面进行的。对WECU电路的动力学进行建模和分析。 Power Simulator(PSim)和Matlab软件用于测试结果。

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