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Design and Verification of a Medium-Frequency Transformer in a Three-Phase Dual-Active Bridge DC-DC Converter for Medium-Voltage Grid Connection of Offshore Wind Farms

机译:海上风电场中压并网三相双有源桥式DC-DC变换器中的中频变压器的设计与验证

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This paper covers the development of a medium-frequency transformer (MFT) for a high-power three-phase dc-dc converter submodule of a modular converter system to inter-connect offshore wind farms with medium-voltage dc collector grids. Here, a low-loss MFT is needed. Therefore, a new MFT design concept for a high-efficient dc-dc converter is proposed. To meet the required series inductance of the converter, usually additional bulky inductors are used in series to the MFT. This paper presents the design of a MFT with an increased leakage inductance avoiding the extra series inductor to realize a high-efficient and compact MFT at the same time. Additionally, the MFT needs to withstand a voltage of ±25 kV of the dc collector grid. These requirements are satisfied by a sectionalized stacked winding structure, an encapsulated secondary winding with resin and by using available nanocrystalline cores. The electrical and thermal performance of the realized MFT prototypes are demonstrated.
机译:本文涵盖了用于模块化变频器系统的大功率三相DC-DC转换器子模块的中频变压器(MFT)的开发,该模块可将海上风电场与中压DC收集器电网互连。在此,需要低损耗的MFT。因此,提出了一种用于高效DC-DC转换器的新型MFT设计方案。为了满足转换器所需的串联电感,通常会在MFT上串联使用其他体积较大的电感器。本文提出了一种漏电电感增加的MFT设计,避免了额外的串联电感器,从而可以同时实现高效且紧凑的MFT。此外,MFT需要承受直流收集器电网的±25 kV电压。这些要求通过分段的堆叠绕组结构,树脂封装的次级绕组以及使用可用的纳米晶核来满足。演示了已实现的MFT原型的电气和热性能。

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