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Averaged modeling of a new bi-directional DC-DC converter

机译:新型双向DC-DC转换器的平均建模

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A novel isolated bi-directional dc- dc converter is proposed in this paper which implements zero current switching (ZCS) for current-fed inverter of the low voltage (LV) side of the converter and zero voltage switching(ZVS) for voltage-fed inverter of the high voltage (HV) side of the converter. Applying the ZCS technique, circulating current of the transformer is limited by the current of input current-sources, so the circulating current and thus the circulating loss of the converter is minimized. Involving the input inductors in the zero voltage switching resonant periods, ZVS is realized for all HV switches approximately in the whole load range. The converter is verified by simulation results of ORCAD Software. A reduced order switching cell averaged model of the converter is developed and then state space averaged model of the converter is derived from the switching cell averaged model. The MATLAB/Simulink simulated waveforms of the mathematical model are compared with the detailed circuit simulation to verify the accuracy of the modeling.
机译:本文提出了一种新颖的隔离双向DC-DC转换器,该转换器实现了转换器低压(LV)端的电流馈电逆变器的零电流开关(ZCS)和电压馈电的零电压开关(ZVS)转换器高压(HV)侧的逆变器。应用ZCS技术,变压器的循环电流受到输入电流源电流的限制,因此循环电流和转换器的循环损耗最小。在零电压开关谐振周期中涉及输入电感器,几乎在整个负载范围内,所有HV开关均实现了ZVS。转换器通过ORCAD软件的仿真结果进行验证。建立转换器的降阶开关单元平均模型,然后从开关单元平均模型导出转换器的状态空间平均模型。将数学模型的MATLAB / Simulink仿真波形与详细的电路仿真进行比较,以验证建模的准确性。

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