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Influence of parasitic parameters on electrical stress of high frequency transformer

机译:寄生参数对高频变压器电应力的影响

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Power electronic transformer (PET) or solid state transformer (SST) is regarded as "energy routers" for the application in new energy power transmission, distributed power energy and electric vehicle It has gradually become a research hotspot due to its high efficiency and flexibility for power control. Among them, the high frequency transformer (HFT) used as a key component in DC-DC converter can generate parasitic parameters to affect the HFT electrical stress. The increase in working frequency can effectively reduce the volume of transformer However; the influence of parasitic parameters closely related to structure, material and layout of HFT become more and more seriously on DC-DC converter performance at high frequency, such as several tens of kHz. This paper provides a simulation study about the influence of parasitic parameters on the electrical stress of HFT under different working conditions. A typical HFT with the rated power of 10 kW was used for obtaining the possible parasitic parameters. The DC-DC converter includes the 20 kHz HFT was simulated considering the parasitic parameters. They can affect the voltage and current waveforms of the windings, especially for the dV/dt and dI/dt regions, which are discussed in this paper.
机译:电力电子变压器(PET)或固态变压器(SST)被视为“能量路由器”,用于新能源电力传输中的应用,由于其高效率和灵活性,分布式电力和电动汽车逐渐成为研究热点功率控制。其中,用作DC-DC转换器中的关键组件的高频变压器(HFT)可以产生寄生参数以影响HFT电力应力。然而,工作频率的增加可以有效地降低变压器的体积;寄生参数与HFT的结构,材料和布局密切相关的寄生参数在高频下的DC-DC转换器性能下变得越来越严重,例如几十kHz。本文提供了关于寄生参数对不同工作条件下HFT电力应力的影响的仿真研究。使用具有10kW的额定功率的典型HFT用于获得可能的寄生参数。考虑到寄生参数,模拟了DC-DC转换器包括20kHz HFT。它们可以影响绕组的电压和电流波形,特别是对于本文中讨论的DV / DT和DI / DT区域。

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