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Analysis and Design of Three Phase Single Stage Isolated Flyback Based PFC Converter with a Novel Clamping Circuit

机译:具有新型夹紧电路的三相单级隔离反激式反激式反激式反激的分析与设计

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In this paper, a three phase isolated flyback based single stage power factor corrected (PFC) converter with a novel clamping circuit for aircraft application is presented. The steady state operation and design calculations of the converter are presented in detail. The converter is operated in discontinuous conduction mode (DCM) due to its inherent advantages such as PFC, reduced number of sensors, zero diode reverse recovery losses and zero current switching on. The converter requires only one sensor, which makes the system cost effective, more reliable and robust. By using the proposed clamping circuit, the transformers leakage inductance energy is captured successfully in a clamping capacitor, and subsequently a secondary 24V DC supply is derived by connecting a forward converter across the clamping capacitor. The performance of the converter is validated through the simulation and experimental results.
机译:在本文中,提出了一种基于三相隔离的反激式反激式的单级功率因数校正(PFC)转换器,其具有用于飞机应用的新型夹紧电路。详细介绍了转换器的稳态操作和设计计算。由于其固有的优点如PFC,减少的传感器数,零二极管反向恢复损耗和零电流接通,因此在不连续的传导模式(DCM)中以不连续的传导模式(DCM)操作。转换器只需要一个传感器,这使得系统具有成本效益,更可靠和稳健。通过使用所提出的钳位电路,变压器漏电感能量在钳位电容器中成功捕获,随后通过将正向转换器连接到夹紧电容器上来导出次级24V DC电源。通过模拟和实验结果验证转换器的性能。

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