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Closed-Form Solution for Efficient ZVS Modulation of DAB Converters

机译:高效的DAB转换器ZVS调制的闭式解决方案

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摘要

A directly employable closed-form analytical solution for the calculation of an efficient, full-operating-range zero voltage switching (ZVS) modulation scheme for bidirectional dual active bridge (DAB) dc–dc converters is presented. Contrary to the analytical ZVS modulation schemes previously proposed in literature, the amount of charge that is required to charge the nonlinear parasitic output capacitances of the switches during commutation is incorporated, ensuring complete commutation of the bridge legs and ZVS of the switching devices. Besides quasi-lossless ZVS, the resulting modulation scheme leads to near-minimum high-frequency circulating currents and thus, minimum conduction losses under the condition of ZVS and for given values of the inductances and transformer turns ratio. Although modifiable for other implementations, the method is demonstrated for a full-bridge full-bridge DAB as a core part of a single-phase, single-stage, bidirectional, isolated ac–dc converter. The resulting modulation scheme is compared with a ZVS modulation scheme calculated using a previously published numerical approach, proving its effectiveness. Experimental results obtained from a state-of-the-art, text{3.7}; text{kW} converter prototype which interfaces a text{400}; text{V} battery with the text{230};text{V}, text{50};text{Hz} utility grid are given to validate the theoretical analysis and practical feasibility of the proposed strategy.
机译:提出了一种可直接使用的闭式分析解决方案,用于计算双向双有源桥(DAB)dc-dc转换器的有效,全工作范围零电压开关(ZVS)调制方案。与先前在文献中提出的解析ZVS调制方案相反,在换向期间为开关的非线性寄生输出电容充电所需的电荷量得以合并,从而确保了桥臂和开关器件ZVS的完全换向。除准无损ZVS外,所得的调制方案还导致近乎最小的高频循环电流,因此,在ZVS条件下以及给定的电感和变压器匝数比值的情况下,传导损耗最小。尽管可以针对其他实现进行修改,但该方法已针对全桥全桥DAB作为单相,单级,双向,隔离式AC-DC转换器的核心部分进行了演示。将所得的调制方案与使用先前发布的数值方法计算的ZVS调制方案进行比较,证明其有效性。实验结果来自最新的文字{3.7};文本{kW}转换器原型,用于连接文本{400};文中给出了文本{V},文本{V},文本{V},文本{50},文本{Hz}的效用网格,以验证所提出策略的理论分析和实际可行性。

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