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A DC–DC Converter Based on the Three-State Switching Cell for High Current and Voltage Step-Down Applications

机译:基于三态开关单元的DC-DC转换器,用于高电流和电压降压应用

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This paper presents a pulsewidth modulation dc–dc nonisolated buck converter using the three-state switching cell, constituted by two active switches, two diodes, and two coupled inductors. Only part of the load power is processed by the active switches, reducing the peak current through the switches to half of the load current, as higher power levels can then be achieved by the proposed topology. The volume of reactive elements, i.e., inductors and capacitors, is also decreased since the ripple frequency of the output voltage is twice the switching frequency. Due to the intrinsic characteristics of the topology, total losses are distributed among all semiconductors. Another advantage of this converter is the reduced region for discontinuous conduction mode when compared to the conventional buck converter or, in other words, the operation range in continuous conduction mode is increased, as demonstrated by the static gain plot. The theoretical approach is detailed through qualitative and quantitative analyses by the application of the three-state switching cell to the buck converter operating in nonoverlapping mode $(D < 0.5)$. Besides, the mathematical analysis and development of an experimental prototype rated at 1 kW are carried out. The main experimental results are presented and adequately discussed to clearly identify its claimed advantages.
机译:本文提出了一种使用三态开关单元的脉宽调制dc-dc非隔离降压转换器,该单元由两个有源开关,两个二极管和两个耦合电感组成。有源开关仅处理一部分负载功率,从而将通过开关的峰值电流减小到负载电流的一半,因为所提出的拓扑可以实现更高的功率水平。由于输出电压的纹波频率是开关频率的两倍,因此电抗元件(即电感器和电容器)的体积也减小了。由于拓扑的固有特性,总损耗分布在所有半导体中。与常规降压转换器相比,该转换器的另一个优点是减少了用于非连续导通模式的区域,换句话说,如静态增益图所示,连续导通模式下的工作范围增加了。通过将三态开关单元应用到以非重叠模式$(D <0.5)$运行的buck转换器,通过定性和定量分析详细介绍了该理论方法。此外,还对额定功率为1 kW的实验原型进行了数学分析和开发。介绍并充分讨论了主要的实验结果,以清楚地确定其要求的优势。

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