用于电动汽车无线充电器的独立主侧控制器

A. Triviño-Cabrera, M. Ochoa, D. Fernández, J. Aguado
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引用次数: 17

摘要

电动汽车依赖于需要经常充电的电池。作为导电充电的替代方案,无线充电器对污染和电力故障提供了更高的可靠性,并且它们还扩展了无需用户干预即可充电的情况和场所(例如停车位,道路上)。为了优化无线充电器的性能,它的配置应该动态地适应不同电池的电气特性。为了实现这一目标,控制器被整合到系统中,以修改属于电力电子模块的一些开关设备的行为。本文提出了一种作用于DC/DC结构的控制器,该控制器位于主侧。作为一种新颖的方法,该控制器通过专门测量一次侧的电压和电流来推断瞬时电池功率需求。这样,就不需要(通过有线或无线链路)主次侧之间进行通信。仿真结果表明,该控制器具有适应不同电池状态的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Independent primary-side controller applied to wireless chargers for electric vehicles
Electric vehicles rely on batteries that need to be frequently recharged. As an alternative to conductive charging, wireless chargers provide a higher reliability to pollution and electric failures and they also extend the situations and places where the recharge could be available without user's intervention (e.g. parking spaces, on-road). In order to optimize the performance of a wireless charger, its configuration should be dynamically adapted to the varying battery's electrical features. Towards this goal, controllers are incorporated into the system to modify the behavior of some switching devices belonging to the power electronics blocks. This paper presents a controller that acts in the DC/DC structure placed in the primary side. As a novelty, the controller infers the instantaneous battery power demands by exclusively measuring voltage and current in the primary side. In this way, there is no need for communicating (via wired or wireless links) the primary and the secondary sides. The simulation results show the ability of the controller to adapt to different battery states.
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