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Loss comparison of matrix and back-to-back converters for offshore WECS

机译:海上WECS矩阵转换器和背靠背转换器的损耗比较

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In this paper is presented a wind park layout of series-connected wind turbines. The wind energy conversion system (WECS) inside the nacelle is described and the main technical challenges presented by this wind park topology are briefly discussed. The WECS requires a full scale AC-AC converter as the generator is a Permanent Magnet (PM) synchronous machine. The matrix converter is an interesting candidate for offshore applications because it is compact and reliable as it does not feature the DC link capacitor which is required by the conventional back-to-back (B2B) converter. Performance of the matrix converter in terms of efficiency is the object of this paper. Losses of both direct and indirect matrix converter are assessed by simulation and compared with those of the B2B converter showing that the matrix converter performs better. Different switch implementations are also included in the comparison: single high rating IGBTs and diodes or series and parallel connections of low rating IGBTs and diodes and Reverse Blocking IGBTs. The series and parallel connection of low rating IGBTs and diodes is found to perform superiorly.
机译:在本文中,提出了串联风力涡轮机的风电场布局。描述了机舱内部的风能转换系统(WECS),并简要讨论了这种风电场拓扑结构带来的主要技术挑战。由于发电机是永磁(PM)同步电机,因此WECS需要一个完整的AC-AC转换器。矩阵转换器非常适合海上应用,因为它紧凑且可靠,因为它没有传统背靠背(B2B)转换器所需的直流链路电容器。矩阵转换器的效率方面的性能是本文的目标。通过仿真评估直接和间接矩阵转换器的损耗,并将其与B2B转换器的损耗进行比较,表明矩阵转换器的性能更好。比较中还包括不同的开关实现方式:单个高额定值IGBT和二极管,或低额定值IGBT和二极管以及反向阻断IGBT的串联和并联。发现低额定值IGBT和二极管的串联和并联连接具有出色的性能。

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