首页> 外文会议>Applied Power Electronics Conference and Exposition (APEC), 2010 >Review of non-isolated bi-directional DC-DC converters for plug-in hybrid electric vehicle charge station application at municipal parking decks
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Review of non-isolated bi-directional DC-DC converters for plug-in hybrid electric vehicle charge station application at municipal parking decks

机译:用于市政停车场的混合动力电动汽车充电站非隔离双向DC-DC转换器的综述

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There is a growing interest on plug-in hybrid electric vehicles (PHEV's) due to energy security and green house gas emission issues, as well as the low electricity fuel cost. As battery capacity and all-electric range of PHEV's are improved, and potentially some PHEV's or EV's need fast charging, there is increased demand to build high power off-board charging infrastructures. A charge station architecture for municipal parking decks has been proposed, which has a DC microgrid to interface with multiple DC-DC chargers, distributed renewable power generations and energy storage, and provides functionalities of normal and rapid charging, grid support such as reactive and real power injection (including V2G), current harmonic filtering and load balance. Several non-isolated bidirectional DC-DC converters suited for charge station applications have been reviewed and compared, as the major focus of this paper. Half bridge converter is a good candidate but it is difficult to maintain high efficiency in wide battery pack voltage range. A variable frequency pulse width modulation (VFPWM) scheme is proposed to mitigate this issue. Finally three-level bi-directional DC-DC converter is suggested to be employed in this application. A 10kW prototype verifies that 95.1-97.9% full load efficiency can be achieved in charging mode with 180-360V battery pack voltage. In addition, the inductor size is only one third of the half bridge counterpart, which is a great advantage for high power converters.
机译:由于能源安全和温室气体排放问题以及低廉的电力燃料成本,人们对插电式混合动力汽车(PHEV)的兴趣与日俱增。随着PHEV的电池容量和全电动范围的提高,以及某些PHEV或EV可能需要快速充电,建立高功率非车载充电基础设施的需求不断增加。已经提出了用于市政停车场的充电站架构,该充电站架构具有可与多个DC-DC充电器接口,分布式可再生能源发电和能量存储接口的DC微电网,并提供正常和快速充电功能,电网支持(例如无功和有功)功率注入(包括V2G),电流谐波滤波和负载平衡。作为本文的主要重点,已经审查并比较了几种适用于充电站应用的非隔离式双向DC-DC转换器。半桥转换器是一个很好的选择,但是很难在较宽的电池组电压范围内保持高效率。提出了可变频率脉冲宽度调制(VFPWM)方案来缓解此问题。最后,建议在此应用中使用三电平双向DC-DC转换器。一个10kW的原型验证了在180-360V电池组电压的充电模式下可以达到95.1-97.9%的满载效率。此外,电感器的尺寸仅为半桥同类产品的三分之一,这对于高功率转换器而言是一个巨大的优势。

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