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Circulating current mitigation in Dual Active Bridge converter

机译:双极桥转换器中循环电流缓解

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This work brings forward a new methodology to maximize the efficiency of Dual Active Bridge (DAB) converter for its several patterns of operation. This goal is reached by the mitigation of its processed circulating energy. It is proposed a figure of merit which relates the average input current and the RMS current of the power transfer inductor, and an algorithm to select the trio of control variables (D1, D2, Φ) ensuring that this objective is achieved. It has been performed a detailed steady-state analysis of every pattern for all the possible modulations, as well as the identification of all commutations under zero voltage of the Full-Bridges that compose the DAB. Due to the twelve different modulation patterns presented by the DAB that affect directly the operation mode, the design, the volume, the weight, and different performances can be achieved. In this way, it is verified the impact of the control variables on converter efficiency, as well its relationships with the average input current and the RMS inductor current. Results show that the converter efficiency obtained for different operation points making the use of the developed algorithm are very close to those obtained making the computation by the optimal converter efficiency.
机译:这项工作提出了一种新方法,可以最大限度地提高双功率桥(DAB)转换器的效率,以实现其几种操作模式。通过减缓其加工的循环能量来达到这一目标。所以建议品质因数将平均输入电流和RMS电流的动力传递电感器,和算法来选择确保该目标得以实现的控制变量(D1,D2,Φ)的三人。已经对所有可能的调制进行了每个模式进行了详细的稳态分析,以及在构成DAB的全桥的零电压下识别所有换向。由于DAB呈现的12个不​​同的调制模式,可以实现直接操作模式,设计,体积,重量和不同性能。通过这种方式,它验证了控制变量对转换器效率的影响,以及其与平均输入电流和RMS电感电流的关系。结果表明,用于使用发达算法的不同操作点获得的转换器效率非常接近通过最佳转换器效率计算计算的那些。

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