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Optimal Asymmetric Duty Modulation to Minimize Inductor Peak-to-Peak Current for a Dual Active Bridge Converter Over a Wide Voltage Range

机译:最佳非对称占空比调制,可在宽电压范围内使双有源桥式转换器的电感峰峰值电流最小化

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Conventionally, the phase-shift modulation (PSM) scheme is the simplest modulation scheme for a dual active bridge (DAB) converter, which only needs to control one variable to realize bidirectional power flow. However, when the input or output voltage of the converter varies widely, a large amount of reactive power is generated and the zero-voltage switching (ZVS) operation cannot be realized, which ultimately results in low efficiency. Asymmetric duty modulation (ADM), as a recently proposed modulation scheme, provides new chances to improve the performance of the DAB converter. On this basis, an optimal asymmetric duty modulation (OADM) scheme is proposed in this paper by minimizing the inductor peak-to-peak current over the whole voltage and power range. Finally, an experimental prototype was built to validate the efficiency improvement of the converter by the proposed OADM scheme.
机译:传统上,相移调制(PSM)方案是双有源桥(DAB)转换器的最简单调制方案,只需控制一个变量即可实现双向潮流。然而,当转换器的输入或输出电压变化很大时,会产生大量的无功功率,并且无法实现零电压开关(ZVS)操作,最终导致效率低下。作为最近提出的调制方案,非对称占空比调制(ADM)为改善DAB转换器的性能提供了新的机会。在此基础上,本文通过在整个电压和功率范围内使电感器的峰峰值电流最小化,提出了一种最佳的非对称占空比调制(OADM)方案。最后,建立了一个实验原型,以验证所提出的OADM方案对转换器效率的提高。

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