首页> 外文OA文献 >Achieving Efficiencies Exceeding 99% in a Super-Junction 5-kW DC-DC Converter Power Stage Through the Use of an Energy Recovery Snubber and Dead Time Optimization
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Achieving Efficiencies Exceeding 99% in a Super-Junction 5-kW DC-DC Converter Power Stage Through the Use of an Energy Recovery Snubber and Dead Time Optimization

机译:通过使用能量回收缓冲器和空载时间优化,在超结型5 kW DC-DC转换器功率级中实现超过99%的效率

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摘要

A highly efficient 5-kW bidirectional DC-DC converter power stage operating from a 400-V supply implementing Super-Junction (SJ) MOSFETs is presented. SJ MOSFETs have low on-state resistances and low switching losses. However, their application in voltage-source converters can be compromised by the reverse recovery behavior of their intrinsic diodes and their highly non-linear output capacitances. A series switching-aid circuit is used to control the output capacitance charging current. The dead times between switching transitions are assessed and optimized in order to deactivate the intrinsic diodes. The combination of these techniques enables very high efficiencies to be attained. Calorimetric measurements indicate a full-load efficiency of 99.1% for the prototype 5-kW DC-DC converter power stage. A loss reduction of approximately 50% is achieved with the prototype converter power stage when compared to an equivalent IGBT based power stage. Lastly, a loss vs. duty cycle function is experimentally determined which can be used to inform the design of a maximum efficiency point tracking system.
机译:提出了一种高效的5 kW双向DC-DC转换器功率级,该功率级由实现超级结(SJ)MOSFET的400 V电源供电。 SJ MOSFET具有低导通电阻和低开关损耗。但是,它们在电压源转换器中的应用可能会因其本征二极管的反向恢复行为和其高度非线性的输出电容而受到损害。串联开关辅助电路用于控制输出电容充电电流。评估和优化开关转换之间的空载时间,以停用本征二极管。这些技术的结合使得可以获得非常高的效率。量热法测量表明,原型5 kW DC-DC转换器功率级的满载效率为99.1%。与等效的基于IGBT的功率级相比,原型转换器功率级的损耗降低了约50%。最后,通过实验确定损耗与占空比的函数,该函数可用于告知最大效率点跟踪系统的设计。

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