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A Four-Degrees-of-Freedom Modulation Strategy for Dual-Active-Bridge Series-Resonant Converter Designed for Total Loss Minimization

机译:为使总损耗最小化而设计的双有源桥串联谐振转换器的四自由度调制策略

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摘要

This paper proposes a four-degrees-of-freedom modulation scheme to mitigate the conduction and switching losses in a dual-active-bridge (DAB) series-resonant converter. Under wide-range variations in the voltage gain and output current, the increased reactive power and root-mean-square tank current can contribute significantly to the conduction loss in a DAB converter, while the occurrence of hard switching leads to a switching loss and an increased device stress. The proposed modulation scheme utilizes internal, external phase shifts, and switching frequency as modulation parameters to achieve zero reactive power, minimum-tank-current, and complete soft-switching operation. Analysis of the proposed modulation scheme is given for both buck- and boost-mode operations. The proposed modulation scheme is validated by means of a 1-kW experimental prototype of a DAB series-resonant converter operating at 100 kHz, designed to interface a supercapacitor with a rated output voltage of 48 V to a 250-V dc bus. The effectiveness of the proposed topology for charging/discharging a supercapacitor under wide-range variations in the voltage gain and output current is verified by simulations and experimental results. A maximum efficiency of 97.7% is recorded from the experimental prototype (The experimental setup used for measuring converter's efficiency is shown in the supplementary material).
机译:本文提出了一种四自由度调制方案,以减轻双有源桥(DAB)串联谐振转换器中的传导和开关损耗。在电压增益和输出电流的宽范围变化下,增加的无功功率和均方根储能电流会严重影响DAB转换器的传导损耗,而硬开关的出现会导致开关损耗和噪声。设备压力增加。拟议的调制方案利用内部,外部相移和开关频率作为调制参数,以实现零无功功率,最小油箱电流和完整的软开关操作。针对降压模式和升压模式操作都给出了建议的调制方案的分析。通过以100 kHz工作的DAB串联谐振转换器的1 kW实验原型验证了提出的调制方案,该转换器设计用于将额定输出电压为48 V的超级电容器连接到250 V直流总线。仿真和实验结果验证了所提出的拓扑结构在电压增益和输出电流的宽范围变化下对超级电容器进行充电/放电的有效性。实验原型记录的最大效率为97.7%(辅助材料中显示了用于测量转换器效率的实验装置)。

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