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An optimized design of bi-directional dual active bridge converter for low voltage battery charger

机译:低压电池充电器双向双有源桥变换器的优化设计

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This paper proposes an optimized design of dual active bridge (DAB) converter for low voltage charger. Among various bi-directional DC/DC converters, DAB converter is a high efficiency buck and boost bi-directional DC-DC converter isolated by a high frequency transformer. Battery voltage varies according to the charging status of the battery and the parameters of the DC/DC converter are the same regardless of the battery voltage. When the battery voltage is high, the soft switching (ZVS) region is reduced compared to the low battery voltage. In this paper, variable switching frequency is adopted in order to maximize soft-switching (ZVS) region at the high battery voltage. The same power can be obtained at the same duty regardless of the battery voltage using the variable switching frequency. The proposed method is applied to a 5kW prototype dual active bridge converter, and the experimental results are analyzed and verified.
机译:本文提出了一种用于低压充电器的双有源桥(DAB)转换器的优化设计。在各种双向DC / DC转换器中,DAB转换器是由高频变压器隔离的高效降压和升压双向DC-DC转换器。电池电压根据电池的充电状态而变化,并且与电池电压无关,DC / DC转换器的参数相同。当电池电压高时,与低电池电压相比,软开关(ZVS)区域会减小。本文采用可变开关频率,以在电池电压较高时最大化软开关(ZVS)区域。使用可变的开关频率,无论电池电压如何,都可以在相同的占空比下获得相同的功率。将该方法应用于5kW样机双有源桥变换器,并对实验结果进行了分析和验证。

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