Triple-Phase Shift Modulation and Tuning Technique to Improve the Efficiency of the Dual Active Bridge Converter

Nicola Zanatta, S. Pistollato, T. Caldognetto, P. Mattavelli
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Abstract

This paper proposes a triple phase shift modulation with an optimization technique that aims at maximizing the efficiency of the Dual Active Bridge (DAB) converter. The DAB converter finds application in smart dc power systems, including the electrification of the powertrain of vehicles and vehicles-togrid applications, where loss minimization is crucial. In this paper, favorable modulation parameters are found first, by aiming at minimum rms currents and zero voltage switching (ZVS) for the converter switches. Then, on the basis of the closed-form analytical description of the converter behavior over the determined favorable modulation patterns, efficiency improvement trajectories in the modulation planes are identified. It is shown that such trajectories lead to optimal efficiency operation, which can be exploited to implement fast closedloop efficiency optimization methods. The reported results are verified experimentally on a 1.5 kW prototype, showing that the proposed approach allows to achieve the best-efficiency operation of the converter.
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提高双有源桥式变换器效率的三移相调制调谐技术
本文提出了一种以双有源桥式(DAB)变换器效率最大化为目标的三相移调制优化技术。DAB转换器在智能直流电源系统中得到应用,包括车辆动力总成的电气化和车辆电网应用,其中损耗最小化是至关重要的。本文首先以最小有效值电流和零电压开关(ZVS)为目标,找到合适的调制参数。然后,在确定的有利调制模式下变换器行为的封闭形式解析描述的基础上,确定了调制平面内的效率提高轨迹。结果表明,这种轨迹可导致最优效率运行,可用于实现快速闭环效率优化方法。在一个1.5 kW的样机上进行了实验验证,结果表明所提出的方法可以实现变流器的最佳效率运行。
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