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Soft-switching PWM full-bridge converters have been widely used in medium-to-high power DC-DC conversions for topological simplicity, easy control and high effi ciency. Early works on soft-switching PWM full-bridge converter by many researchers included various topologies and modulation strategies. However, these works were scattered, and the relationship among these topologies and modulation strategies had not been revealed. This book intends to describe systematically the soft-switching techniques for pulse-width modulation (PWM) full-bridge converters, including the topologies, control and…mehr
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- Produktdetails
- Verlag: John Wiley & Sons
- Seitenzahl: 232
- Erscheinungstermin: 3. April 2014
- Englisch
- ISBN-13: 9781118702222
- Artikelnr.: 41096707
- Verlag: John Wiley & Sons
- Seitenzahl: 232
- Erscheinungstermin: 3. April 2014
- Englisch
- ISBN-13: 9781118702222
- Artikelnr.: 41096707
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
MZr1 < ILf (t1)
MK < Vin
MZr1 (Referring to Figure 7.2a) 156 7.2.2 Case II: ILf (t1)
MK < 0.5Vin
MZr1 (Referring to Figure 7.2b) 156 7.3 Clamping Diode Current-Reset Scheme 158 7.3.1 Reset Voltage Source 158 7.3.2 Implementation of the Reset Voltage Source 160 7.4 Operating Principle of the ZVS PWM Full-Bridge Converter with Current Transformer 162 7.4.1 Operating Principle under Heavy Load Conditions 162 7.4.2 Operating Principle under Light Load Conditions 167 7.5 Choice of Current Transformer Winding Turns Ratio 173 7.5.1 Clamping Diode Current-Reset Time 173 7.5.2 Output Rectifier Diode Voltage Stress 174 7.5.3 Current Transformer Winding Turns Ratio 174 7.6 Experimental Verification 175 7.7 Summary 179 References 180 8 Zero-Voltage-Switching PWM Full-Bridge Converters with Current-Doubler Rectifiers 181 8.1 Operating Principle 182 8.2 Realization of ZVS for the Switches 187 8.3 Design Considerations 188 8.3.1 Transformer Winding Turns Ratio 189 8.3.2 Output Filter Inductance 189 8.3.3 Blocking Capacitor 192 8.4 Experimental Results 193 8.5 Summary 197 References 198 Appendix 199 Bibliography 203 Index 207
MZr1 < ILf (t1)
MK < Vin
MZr1 (Referring to Figure 7.2a) 156 7.2.2 Case II: ILf (t1)
MK < 0.5Vin
MZr1 (Referring to Figure 7.2b) 156 7.3 Clamping Diode Current-Reset Scheme 158 7.3.1 Reset Voltage Source 158 7.3.2 Implementation of the Reset Voltage Source 160 7.4 Operating Principle of the ZVS PWM Full-Bridge Converter with Current Transformer 162 7.4.1 Operating Principle under Heavy Load Conditions 162 7.4.2 Operating Principle under Light Load Conditions 167 7.5 Choice of Current Transformer Winding Turns Ratio 173 7.5.1 Clamping Diode Current-Reset Time 173 7.5.2 Output Rectifier Diode Voltage Stress 174 7.5.3 Current Transformer Winding Turns Ratio 174 7.6 Experimental Verification 175 7.7 Summary 179 References 180 8 Zero-Voltage-Switching PWM Full-Bridge Converters with Current-Doubler Rectifiers 181 8.1 Operating Principle 182 8.2 Realization of ZVS for the Switches 187 8.3 Design Considerations 188 8.3.1 Transformer Winding Turns Ratio 189 8.3.2 Output Filter Inductance 189 8.3.3 Blocking Capacitor 192 8.4 Experimental Results 193 8.5 Summary 197 References 198 Appendix 199 Bibliography 203 Index 207