A simplified power loss calculation method for PFC boost topologies

F. Musavi, D. Gautam, W. Eberle, W. Dunford
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引用次数: 16

Abstract

In this paper, a novel, simple and accurate method is proposed to predict the RMS and average current for each component in the most common continuous conduction mode (CCM) AC-DC power factor correction (PFC) boost derived topologies. The model is based on using the effective duty cycle independent of the switching action. The proposed model enables simple and accurate estimation of powertrain component conduction losses. The paper includes the derivation of the RMS, or average current for the boost and interleaved boost PFC topologies. PSIM simulation and experimental results are used to verify the accuracy of model. Experimental and simulation results of a prototype interleaved boost converter converting universal AC input voltage to 400 V DC at up to 3.4 kW output are given to verify the proposed model. The experimental results demonstrate that the model can correctly predict the RMS and average currents in the interleaved boost topology.
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一种简化的PFC升压拓扑的功耗计算方法
本文提出了一种新颖、简单、准确的方法来预测最常见的连续导通模式(CCM)交直流功率因数校正(PFC)升压衍生拓扑中每个元件的均方根和平均电流。该模型基于不依赖于开关动作的有效占空比。该模型能够简单准确地估计动力总成部件的传导损耗。本文包括升压和交错升压PFC拓扑的RMS或平均电流的推导。通过PSIM仿真和实验结果验证了模型的准确性。为了验证所提出的模型,给出了一个将通用交流输入电压转换为400 V直流,输出功率高达3.4 kW的交错升压变换器原型的实验和仿真结果。实验结果表明,该模型能够正确预测交错升压拓扑下的均方根和平均电流。
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