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Dual active bridge based battery charger for plug-in hybrid electric vehicle with charging current containing low frequency ripple

机译:基于双有源桥的电池充电器,用于插电式混合动力汽车,充电电流包含低频纹波

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摘要

High power density is strongly preferable for the on-board battery charger of Plug-in Hybrid Electric Vehicle (PHEV). Wide band gap devices, such as Gallium Nitride HEMTs are being explored to push to higher switching frequency and reduce passive component size. In this case, the bulk DC link capacitor of AC-DC Power Factor Correction (PFC) stage, which is usually necessary to store ripple power of two times the line frequency in a DC current charging system, becomes a major barrier on power density. If low frequency ripple is allowed in the battery, the DC link capacitance can be significantly reduced. This paper focuses on the operation of a battery charging system, which is comprised of one Full Bridge (FB) AC-DC stage and one Dual Active Bridge (DAB) DC-DC stage, with charging current containing low frequency ripple at two times line frequency, designated as sinusoidal charging. DAB operation under sinusoidal charging is investigated. Two types of control schemes are proposed and implemented in an experimental prototype. It is proved that closed loop current control is the better. Full system test including both FB AC-DC stage and DAB DC-DC stage verified the concept of sinusoidal charging, which may lead to potentially very high power density battery charger for PHEV.
机译:对于插电式混合动力汽车(PHEV)的车载电池充电器,高功率密度是非常可取的。人们正在研究宽带隙器件,例如氮化镓HEMT,以提高开关频率并减小无源元件的尺寸。在这种情况下,AC-DC功率因数校正(PFC)级的大容量DC链路电容器通常是存储直流电流充电系统中两倍于线路频率的纹波功率所必需的,因而成为功率密度的主要障碍。如果电池中允许低频纹波,则可以显着降低直流母线电容。本文着重于电池充电系统的操作,该系统由一个全桥(FB)AC-DC级和一个双有源桥(DAB)DC-DC级组成,充电电流在两倍的时间内包含低频纹波频率,称为正弦充电。研究了正弦充电下的DAB操作。在实验原型中提出并实现了两种控制方案。实践证明,闭环电流控制效果更好。包括FB AC-DC级和DAB DC-DC级在内的完整系统测试验证了正弦充电的概念,这可能会导致用于PHEV的功率密度很高的电池充电器。

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