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An All-DC Offshore Wind Farm With Series-Connected Turbines: An Alternative to the Classical Parallel AC Model?

机译:具有串联涡轮机的全DC海上风电场:经典并联AC模型的替代方案?

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摘要

In this paper, the concept of an all-dc wind park with series-connected turbines is investigated as an alternative to the classical ac parallel or radial wind park. This paper presents a literature overview of all-dc wind park concepts with series connection. A three-phase conversion system with permanent magnet machine, ac-ac converter, high-frequency transformer, and diode bridge rectifier is suggested in this paper for the series connection of dc turbines. The dc series park with the suggested conversion system is compared in terms of losses, cost, and reliability to the state-of-the-art park configuration which is the ac radial park with HVDC transmission. It is found that the dc series park becomes comparable with the ac radial design for high ratings of the dc turbines. Furthermore, the comparison shows that emphasis must be put on reducing the losses in the conversion system of the dc turbine and, particularly, the ac-ac converter. Therefore, the efficiency of the ac-ac converter is compared for three different topologies: the direct matrix converter, the indirect matrix converter, and the conventional back-to-back converter. The direct matrix converter is found to be the most efficient, suitable for the suggested conversion system.
机译:在本文中,研究了具有串联涡轮机的全直流风力发电场的概念,以替代传统的交流并联或径向风力发电场。本文介绍了具有串联连接的全直流风力发电场概念的文献综述。本文提出了一种由永磁电机,交流-交流转换器,高频变压器和二极管桥式整流器组成的三相转换系统,用于直流涡轮机的串联连接。将具有建议的转换系统的直流系列暂存器在损耗,成本和可靠性方面与最先进的暂存器配置进行比较,后者是具有HVDC传输的交流辐射状暂存器。发现对于直流涡轮机的高额定值,直流系列停车区可与交流径向设计相媲美。此外,比较表明,必须重点降低直流涡轮机,尤其是交流-交流转换器的转换系统中的损耗。因此,针对三种不同的拓扑比较了AC-AC转换器的效率:直接矩阵转换器,间接矩阵转换器和常规背靠背转换器。发现直接矩阵转换器是最有效的,适用于建议的转换系统。

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