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Optimized Modulation and Dynamic Control of a Three-Phase Dual Active Bridge Converter With Variable Duty Cycles

机译:具有可变占空比的三相双有源桥式变换器的优化调制和动态控制

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摘要

The three-phase dual active bridge (3p-DAB) converter is a promising topology for high power dc-dc conversion due to advantages of bidirectional power flow, inherent soft-switching capability, and reduced filter volume. This paper presents comprehensive analysis of the duty cycle control (DCC) for optimizing the performance of the 3p-DAB. Based on DCC, an optimized modulation strategy is proposed to minimize the conduction losses of the 3p-DAB in the whole load range. The proposed modulation strategy extends the soft-switching range of the 3p-DAB with large voltage variations simultaneously. It is established through loss analysis that the proposed modulation strategy boosts the efficiency of the 3p-DAB, especially at low loads. When the duty cycles change fast as a result of the abruptly changed transmission power, the transformer currents can become unbalanced, leading to the magnetic bias and oscillations in dc currents. This paper further proposes a fast transient current control (FTCC) method for the 3p-DAB with variable duty cycles. The FTCC enables the converter to transfer from one steady state to another within about one-third switching period, hence balancing the transformer currents rapidly and avoiding oscillations in dc currents. Finally, experimental results verify the outstanding performance of the proposed modulation strategy and FTCC method.
机译:三相双有源桥(3p-DAB)转换器具有双向功率流,固有的软开关功能和减小的滤波器体积等优点,是用于高功率DC-DC转换的有希望的拓扑。本文介绍了占空比控制(DCC)的综合分析,以优化3p-DAB的性能。基于DCC,提出了一种优化的调制策略,以使3p-DAB在整个负载范围内的传导损耗最小。所提出的调制策略以较大的电压变化同时扩展了3p-DAB的软开关范围。通过损耗分析可以确定,提出的调制策略可提高3p-DAB的效率,尤其是在低负载下。由于传输功率的突然变化而导致占空比快速变化时,变压器电流可能变得不平衡,从而导致磁偏置和直流电流振荡。本文还针对占空比可变的3p-DAB提出了一种快速瞬态电流控制(FTCC)方法。 FTCC使转换器能够在大约三分之一的开关周期内从一种稳态转换到另一种稳态,从而快速平衡变压器电流并避免了直流电流的振荡。最后,实验结果验证了所提出的调制策略和FTCC方法的出色性能。

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