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Asymmetrical-PWM DAB Converter With Extended ZVS/ZCS Range and Reduced Circulating Current for ESS Applications

机译:具有扩展ZVS / ZCS范围的不对称-PWM DAB转换器,并为ESS应用降低了循环电流

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The dual-active bridge (DAB) topology is commonly preferred in bidirectional applications due to several attractive features, including auto-adjust of power flow, galvanic insulation, wide voltage gain, and zero voltage switching (ZVS) capability over some power ranges. However, the efficiency of the converter drops at light loads because the ZVS range is directly dependent on the circulating current. Assuming that the processed power is variable, the DAB converter's design must find a compromise between extending ZVS ranges and reducing the reactive power processing to ensure higher efficiency. Aiming this compromise, many papers propose hybrid approaches in which the modulation strategy is selected according to the processed power. However, this is not a simple solution because it demands multivariable control and offline optimizations. This paper proposes a modulation strategy to ensure ZVS and reduce the circulating current for the DAB converters. While the usual phase-shift modulation provides ZVS operation in a range of 40% to 100% of rated power, the proposed asymmetrical pulse-width modulation can obtain ZVS operation in a range of 2% to 100% of rated power. Experimental results demonstrated that the proposed strategy improves the converter efficiency for all power ranges, especially at light loads.
机译:由于几种有吸引力的特征,双极桥(DAB)拓扑通常优选在双向应用中,包括在一些功率范围内的电流,电流绝缘,宽电压增益和零电压切换(ZVS)能力的自动调节。然而,由于ZVS范围直接依赖于循环电流,转换器的效率下降。假设处理后的电源是可变的,DAB转换器的设计必须在扩展ZVS范围之间找到折衷,并减少无功功率处理以确保更高的效率。旨在这种妥协,许多论文提出了一种混合方法,其中根据处理的电力选择调制策略。但是,这不是一个简单的解决方案,因为它需要多变量控制和离线优化。本文提出了一种调制策略,以确保ZVS并降低DAB转换器的循环电流。虽然通常的相移调制在额定功率的40%至100%范围内提供ZVS操作,但所提出的不对称脉冲宽度调制可以在额定功率的2%至100%的范围内获得ZVS操作。实验结果表明,所提出的策略提高了所有功率范围的转换效率,特别是在轻负载下。

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