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Trapezoidal Current Modulation for Bidirectional High-Step-Ratio Modular DC–DC Converters

机译:双向高阶比例模块化DC-DC转换器的梯形电流调制

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摘要

A modular dc-dc converter (MDCC) has been proposed for high-step-ratio interconnection in dc grid applications. To further optimize the performance of the MDCC, this article presents a trapezoidal current modulation with bidirectional power flow ability. By giving all the submodule (SM) capacitors an equal duty to withstand the stack dc voltage, their voltages are balanced without additional feedback control. Moreover, based on soft-switching performance and circulating current analysis, three-level and two-level operation modes featured with high efficiency conversion and large power transmission, respectively, are introduced. The control schemes of both modes are designed to minimize the conduction losses. Besides, the SM capacitor voltage ripples with different switching patterns are compared, and the option for ripple minimization is presented. A full-scale case study is provided to introduce the design process and device selection of the MDCC. The experimental tests based on a downscaled prototype are finally presented to validate the theoretical analysis.
机译:提出了一种模块化DC-DC转换器(MDCC),用于DC电网应用中的高步进比互连。为了进一步优化MDCC的性能,本文提出了具有双向功率流能力的梯形电流调制。通过为所有子模块(SM)电容器提供相等的占空比以承受电池组的直流电压,无需额外的反馈控制即可平衡其电压。此外,基于软开关性能和循环电流分析,分别介绍了具有高效率转换和大功率传输的三级和二级操作模式。两种模式的控制方案均设计为最小化传导损耗。此外,比较了具有不同开关模式的SM电容器电压纹波,并提出了减小纹波的选项。提供了一个全面的案例研究,以介绍MDCC的设计过程和设备选择。最后提出了基于缩小原型的实验测试,以验证理论分析。

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