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Optimal ZVS Modulation of Single-Phase Single-Stage Bidirectional DAB AC–DC Converters

机译:单相单级双向DAB AC-DC转换器的最佳ZVS调制

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摘要

A comprehensive procedure for the derivation of optimal, full-operating-range zero voltage switching (ZVS) modulation schemes for single-phase, single-stage, bidirectional and isolated dual active bridge (DAB) ac–dc converters is presented. The converter topology consists of a DAB dc–dc converter, receiving a rectified ac line voltage via a synchronous rectifier. The DAB comprises primary and secondary side full bridges, linked by a high-frequency isolation transformer and a series inductor. ZVS modulation schemes previously proposed in the literature are either based on current-based or energy-based ZVS analyses. The procedure outlined in this paper for the calculation of optimal DAB modulation schemes (i.e., combined phase-shift, duty-cycle, and switching frequency modulation) relies on a novel, more accurate, current-dependent charge-based ZVS analysis, taking into account the amount of charge that is required to charge the nonlinear parasitic output capacitances of the switches during commutation. Thereby, the concept of “commutation inductance(s)” is shown to be an essential element in achieving full-operating-range ZVS. The proposed methods are applied to a 3.7 kW, bidirectional, and unity power factor electric vehicle battery charger which interfaces a 400 $hbox{V}$ dc-bus with the $hbox{230} hbox{V}_{{rm ac}}$, 50-Hz utility grid. Experimental results obtained from a high-power-density, high-efficiency converter prototype are given to validate the theoretical analysis and practical feasibility of the proposed strategy.
机译:提出了用于单相,单级,双向和隔离双有源桥(DAB)ac-dc转换器的最佳,全工作范围零电压开关(ZVS)调制方案的推导的综合过程。转换器拓扑由DAB dc-dc转换器组成,可通过同步整流器接收整流的交流线路电压。 DAB包括一次侧和二次侧全桥,由高频隔离变压器和一个串联电感器链接。先前在文献中提出的ZVS调制方案是基于基于电流或基于能量的ZVS分析。本文概述的用于计算最佳DAB调制方案(即相移,占空比和开关频率调制的组合)的程序依赖于新颖,更准确,与电流有关的基于电荷的ZVS分析,考虑了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。因此,“换向电感”的概念被证明是实现全工作范围ZVS的基本要素。所建议的方法适用于3.7 kW双向,统一功率因数的电动汽车电池充电器,该充电器将400​​ $ hbox {V} $直流总线与$ hbox {230} hbox {V} _ {{rm ac} } $,50 Hz公用电网。从高功率密度,高效率的转换器原型获得的实验结果可验证该策略的理论分析和实际可行性。

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