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Unified PWM control to minimize conduction losses under ZVS in the whole operating range of dual active bridge converters

机译:统一的PWM控制可在双有源桥式转换器的整个工作范围内将ZVS下的传导损耗降至最低

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摘要

The dual active bridge (DAB) topology has great advantages for high power dc-dc conversion, especially in applications that bidirectional power transfer is required. Characteristics of dual active bridge are studied while approximating the power transfer by considering the fundamental components. Switching modes for each working mode of DAB are confirmed base on the criteria that extending the soft switching range and minimizing the conduction losses. Unified pulse-width-modulation (PWM) control that minimizes the conduction losses and allows all switches to be operated under zero-voltage-switching (ZVS) in the whole load range is proposed. The optimal relative values of duty cycles used for the two full bridges and the phase-shift are derived with respect to minimize the conduction losses under ZVS range in the chosen switching mode by applying the method of Lagrange Multiplier Rule. A DAB converter is modeled in Saber and the efficiency improving is verified by the simulation results.
机译:双有源桥(DAB)拓扑在高功率dc-dc转换方面具有巨大优势,尤其是在需要双向功率传输的应用中。研究双有源桥的特性,同时通过考虑基本成分来近似功率传输。根据扩展软开关范围并最大程度降低导通损耗的标准,确定了DAB每种工作模式的开关模式。提出了一种统一的脉冲宽度调制(PWM)控制,该控制可将传导损耗降至最低,并允许所有开关在整个负载范围内在零电压开关(ZVS)下工作。通过应用拉格朗日乘数法则,推导了用于两个全桥和相移的占空比的最佳相对值,以在所选开关模式下将ZVS范围内的传导损耗降至最低。在Sabre中对DAB转换器进行了建模,并通过仿真结果验证了效率的提高。

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