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A Modified Topology of a High Efficiency Bidirectional Type DC–DC Converter by Synchronous Rectification

机译:同步整流的高效双向型DC-DC转换器的修改拓扑

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摘要

A modified Topology to acquire high efficiency of a bidirectional method of DC–DC converter of non-isolated approach is proposed. The modified circuit involves four numbers of switches with their body diodes, passive elements as two inductors as well as a capacitor and the circuit arrangements double boost converters to progress the voltage gain. The input current of the proposed topology divided amongst the two dissimilar values of inductors produces greater efficiency. In the step-down mode, an apparent lessening in voltage gain and also enhanced efficiency can be realized in the recommended system by expending a synchronous rectification. The modified topology shields the technique for presentation of easy control configurations and is used for truncated output voltage with a large current of energy storage systems in the renewable applications as well as hybrid energy source electric vehicle applications. The simulation of the projected structure has been conducted through MATLAB/Simulink software and has been corroborated through a 12 V/180 V, 200 Watts experimental prototype circuit.
机译:提出了一种改进的拓扑,以获取非隔离方法DC-DC转换器的高效率的高效率。修改的电路涉及具有它们的主体二极管的四个交换机,被动元件作为两个电感器以及电容器以及电路布置双升压转换器来进展电压增益。所提出的拓扑的输入电流除以电感器的两个不同值产生更高的效率。在降压模式中,通过消耗同步整流,可以在推荐系统中实现电压增益中的明显减少,并且可以在推荐系统中实现。修改的拓扑结构屏蔽了易于控制配置的技术,并用于截断的输出电压,该电压在可再生应用中具有大电流的能量存储系统以及混合能源电动车辆应用。已经通过Matlab / Simulink软件进行了投影结构的仿真,并通过了12 V / 180 V,200瓦的实验原型电路进行了证实。

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