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Active Saturation Mitigation in High-Density Dual-Active-Bridge DC–DC Converter for On-Board EV Charger Applications

机译:用于车载EV充电器应用的高密度双有源桥DC-DC转换器中的有源饱和抑制

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摘要

This article presents a transformer saturation prevention algorithm (SPA) targeting dual-active-bridge (DAB) dc-dc converters utilized in bidirectional, two-stage electric vehicle (EV) on-board battery chargers. Saturation prevention is achieved by detecting the variation in transformer current slope near the boundary of saturation and applying duty-cycle offsets to the DAB converter full bridges. Compared to alternative methods of saturation mitigation, the proposed algorithm offers the following benefits: Lower transformer design safety margins which enable volume reduction with minimal harm to efficiency, and low-cost implementation using a single low-cost current sensor even at high converter switching speeds. Experiments on a custom 6.6-kW on-board EV charger confirm the controller functionality and initial converter analysis. A peak converter efficiency of 96.8 with a transformer volume of 80 cm(3) is achieved, which is a 50% volume reduction in comparison to other academic works.
机译:本文提出了一种针对双向,两级电动汽车(EV)车载电池充电器中使用的双有源桥(DAB)DC-DC转换器的变压器饱和防止算法(SPA)。通过检测饱和边界附近的变压器电流斜率变化,并对DAB转换器全桥施加占空比偏移,可以实现饱和防止。与降低饱和的替代方法相比,所提出的算法具有以下优点:变压器设计的安全裕度较低,可以在不影响效率的情况下减小体积,并且即使在较高的转换器开关速度下也可以使用单个低成本电流传感器进行低成本实施。在定制的6.6 kW车载EV充电器上进行的实验证实了控制器的功能和初始转换器分析。变压器体积为80 cm(3)时,转换器的峰值效率为96.8,与其他学术著作相比,体积减小了50%。

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