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Titlebook: High-Frequency Isolated Bidirectional Dual Active Bridge DC–DC Converters with Wide Voltage Gain; Deshang Sha,Guo Xu Book 2019 Springer Na

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Introduction,ethods for dual active bridge control, and key issues of DAB converters. Bidirectional power flow, galvanic isolation, and wide voltage gain range are necessary for some applications such as energy storage system, automotive applications, SST-based DC fast charger. To achieve wide ZVS ranges and low
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,Unified Boundary Trapezoidal Modulation Control for Dual Active Bridge DC–DC Converter,e DC–DC converter is proposed in this chapter. The fixed duty cycle compensation and magnetizing current design are firstly introduced to achieve the zero-voltage switching (ZVS) of the power switches, which cannot be ensured with the conventional TZM control. As a result, all the power switches of
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Hybrid-Bridge-Based DAB Converter with Wide Voltage Conversion Gain,ions. With the addition of an auxiliary half-bridge circuit, the topology becomes an integration of a half-bridge and a full-bridge DAB converter. Unlike other PWM generation method for DAB converters, this converter utilizes four-level voltage at one port of the transformer to obtain matched voltag
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Dual-Transformer-Based DAB Converter with Wide ZVS Range for Wide Voltage Gain Application,his chapter. The phase shift control is adopted for this converter with minimum power switches employing half-bridge output, and a control law is proposed to achieve wide ZVS range. With the proposed method, four switches of the converter can achieve full range of ZVS. The other two switches can ach
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Blocking-Cap-Based DAB Converters,s used for avoiding the DC flux bias in the transformer of conventional DAB converter, is utilized to achieve better performance under wide voltage gain range. By changing PWM generating method under different voltage input, the converter can work in half-bridge and full-bridge mode correspondingly
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