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首页> 外文期刊>Journal of power electronics >Design of a Novel Integrated L-C-T for PSFB ZVS Converters
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Design of a Novel Integrated L-C-T for PSFB ZVS Converters

机译:用于PSFB ZVS转换器的新型集成L-C-T的设计

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摘要

To enhance the zero-voltage switching (ZVS) range and power density of the phase-shift full-bridge (PSFB) ZVS converters used in geophysical exploration, an additional resonant inductor is used as a leakage inductance and a blocking capacitor which is equivalent to interlayer capacitance is integrated into a novel integrated inductor-capacitor-transformer (L-C-T). The leakage inductance and equivalent interlayer capacitance of the novel integrated L-C-T are difficult to determine by conventional methods. To address this issue, this paper presents accurate and efficient methods to compute the leakage inductance and equivalent interlayer capacitance. Moreover, the accuracy of this methodology, which is based on electromagnetic energy and Lebedev's method, is verified by an experimental analysis and a finite element analysis (FEA). Taking the problems of the novel integrated L-C-T into consideration, the losses of the integrated L-C-T are analyzed and the temperature rise of the integrated L-C-T is determined by FEA. Finally, a PSFB ZVS converter prototype with the novel integrated L-C-T is designed and tested.
机译:为了扩大地球物理勘探中使用的相移全桥(PSFB)ZVS转换器的零电压开关(ZVS)范围和功率密度,使用了一个额外的谐振电感器作为漏感和一个阻塞电容器,等效于层间电容被集成到新型集成电感器-电容器-变压器(LCT)中。新型集成L-C-T的漏感和等效层间电容很难通过常规方法确定。为了解决这个问题,本文提出了准确有效的方法来计算漏感和等效层间电容。此外,通过实验分析和有限元分析(FEA)验证了基于电磁能和Lebedev方法的该方法的准确性。考虑到新型集成L-C-T的问题,分析了集成L-C-T的损耗,并通过FEA确定了集成L-C-T的温升。最后,设计并测试了带有新型集成L-C-T的PSFB ZVS转换器原型。

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