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一种混合开关电感和开关电容的高增益DC/DC变换器
引用本文:刘明杰,陈艳峰,张波,丘东元.一种混合开关电感和开关电容的高增益DC/DC变换器[J].电源学报,2020,18(4):85-93.
作者姓名:刘明杰  陈艳峰  张波  丘东元
作者单位:华南理工大学电力学院,华南理工大学电力学院,华南理工大学电力学院,华南理工大学电力学院
基金项目:广东省自然科学基金团队项目(2017B030312001, 2019A1515011133)
摘    要:针对传统Z源DC/DC变换器存在的输入电流不连续、输出电压增益不够高和功率器件电压应力较高等不足,利用开关电感和开关电容技术,提出了一种混合开关高增益DC/DC变换器。该变换器主电路中只用到1个储能电容,结构简单,与现有典型的高增益阻抗源DC/DC变换器相比,所提出的混合开关电感和开关电容的DC/DC变换器可以实现更高的输出电压增益,同时电容和开关器件的电压应力较低。详细分析了所提变换器的工作原理,通过在实验室中所建立的输入电压16~40 V、输出电压26~107 V和输出功率7~114 W的原型验证了其性能。

关 键 词:开关电感  开关电容  电压应力  高增益  DC/DC变换器
收稿时间:2018/12/19 0:00:00
修稿时间:2020/7/9 0:00:00

High-gain DC/DC Converter with Hybrid Switched-inductor and Switched-capacitor Cell
LIU Mingjie,CHEN Yanfeng,ZHANG Bo and QIU Dongyuan.High-gain DC/DC Converter with Hybrid Switched-inductor and Switched-capacitor Cell[J].Journal of power supply,2020,18(4):85-93.
Authors:LIU Mingjie  CHEN Yanfeng  ZHANG Bo and QIU Dongyuan
Affiliation:Electric Power Academy,South China University of Technology,Power Academy,South China University of Technology,Electric Power Academy,South China University of Technology,Electric Power Academy,South China University of Technology
Abstract:Against the disadvantages of traditional Z-source DC/DC converters such as discontinuous input current, limited output voltage gain and high-voltage stresses over power devices, etc., a high-gain DC/DC converter with hybrid switched-inductor and switched-capacitor cell is presented. The proposed topology has the advantage of simple circuit structure since only one energy storage capacitor is adopted. Moreover, compared with the existing typical Z-source topologies, the proposed DC/DC converter can achieve not only higher output voltage gain, but also relatively lower voltage stress over the capacitor and switching devices. Based on a detailed analysis of the working principle of the proposed converter, a prototype is built, with varied ranges of input voltage, output voltage and output power from 16 to40 V, 26-107 V and 7-114 W, respectively. The experimental results are in agreement with simulations and theoretical analysis, which verify the performances of the proposed converter.
Keywords:switched-inductor  switched-capacitor  voltage stress  high-gain  DC/DC converter
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