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High Voltage Gain Dual Active Bridge Converter with an Extended Operation Range for Renewable Energy Systems

机译:高压增益双功动桥转换器,可再生能源系统具有扩展操作范围

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Developing bidirectional dc-dc converters has become a critical research topic and gains more and more attention in recent years due to the extensive applications of smart grids with energy storages, hybrid and electrical vehicles and dc microgrids. In this paper, a Partial Parallel Dual Active Bridge (P~2DAB) converter, i.e. low-voltage (LV) side parallel and high-voltage (HV) side series, is proposed to achieve high voltage gain and low current stress over switching devices and transformer windings. Given the unmodified P~2DAB power stage, by regulating the phase-shift angle between the paralleled active bridges, the power equations and voltage gain are then modified, and therefore the operation range can be extended effectively. The operating principles of the proposed converter and its power characteristics under various operation modes are studied, and the design constraints are discussed. Finally, a laboratory prototype is constructed and tested. Both simulation and experimental results have verified the proposed topology's operation and design.
机译:开发双向DC-DC转换器已成为近年来越来越多的关注研究主题,并且由于智能电网与能量储存,混合动力和电气车辆和DC微电网的广泛应用,近年来越来越多地提升。本文采用部分平行双有源桥(P〜2dab)转换器,即低压(LV)侧平行和高压(HV)侧系列,以实现高电压增益和在开关装置上的低电流应力和变压器绕组。考虑到未修改的P〜2dab功率级,通过调节并联有源网桥之间的相移角,然后改变功率方程和电压增益,因此可以有效地扩展操作范围。研究了所提出的转换器的操作原理及其在各种操作模式下的功率特性,并讨论了设计约束。最后,建造和测试了实验室原型。模拟和实验结果都验证了所提出的拓扑操作和设计。

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