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The partial-resonant single active bridge DC-DC converter for conduction losses reduction in the single active bridge

机译:用于传导损耗的部分谐振单极式电桥DC-DC转换器在单个有源桥中减少

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摘要

The Partial Resonant Single Active Bridge (PR-SAB) introduced in this paper is able to reduce conduction losses in the Single Active Bridge (SAB) with the addition of partial resonant phases. In the SAB, current flows through the switch snubber capacitors only during the short quasi-ZVS turnoff phases. However in the PR-SAB, current flows in the snubber capacitors instead of the switches and diodes during the partial resonant phases which occupy up to 50% of each switching period. As capacitors have negligible losses as compared to switches and diodes especially at higher voltages, conduction losses are reduced when significant portion of current is diverted to the capacitors. By reducing conduction losses, higher overall efficiency is achieved in the PR-SAB. The conduction losses reductions of the components in the PR-SAB are analysed and compared with those in the SAB. IGBT switching losses reductions during quasi-ZVS turn-off in the PR-SAB are also discussed. With the analysed conduction and switching losses, the improved efficiencies of the PR-SAB over the SAB are analytically determined. As compared to the SAB, the PR-SAB also exhibits up to 20% lower peak currents resulting in lower component stresses. These analysis are verified with experimental results obtained with a 3.4 kW hardware prototype.
机译:本文中引入的部分谐振单极有源桥(PR-SAB)能够通过添加部分共振阶段降低单个有源桥(SAB)中的导通损耗。在SAB中,电流仅在短时间ZVS转盘阶段流过开关缓冲电容器。然而,在PR-SAB中,在缓冲电容器中的电流流动,而不是在部分谐振阶段期间占据每个开关周期的50%的开关和二极管。由于电容器与尤其处于更高电压的开关和二极管相比具有可忽略的损失,当电流的大部分被转移到电容器时,导电损耗减小。通过降低导电损耗,PR-SAB在PR-SAB中实现了更高的整体效率。分析了PR-SAB中组分的导通损耗和与鼠尾草中的相比。还讨论了PR-SAB中的准ZVS关断期间的IGBT切换损耗降低。通过分析的传导和切换损耗,分析确定PR-SAB在SAB上的提高效率。与SAB相比,PR-SAB也显示出高达20%的峰值电流,导致较低的组分应力。使用3.4 kW硬件原型获得的实验结果来验证这些分析。

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