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Investigation of the Interoperability of a Dynamic WPT Pickup with Multiple Source Track Designs

机译:多种源轨道设计的动态WPT拾取互操作性研究

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Dynamic Wireless Power Transfer (WPT) technologies enable electric vehicles to be powered from a road whilst in motion. This can overcome the issues of range anxiety and need for large storage capacity of batteries. In order to do this the coils in the road (source) and on the vehicle (pickup) must be designed to be compatible, so called interoperability. A method of assessing this interoperability is presented. This uses investigations of the magnetic field shape and polarity produced by three different types of source coils on the road. It also considers the modifications needed on a vehicle side to ensure interoperability is achieved. In order to produce accurate assessment both finite element analysis and experimental validation are employed to measure the magnetic coupling between the source and pickup for a range of positions. The study shows when coupling factor (k) exceeds 0.1 then interoperability of this combination is possible. This shows that although the twisted stretched track (TST) and lumped double-d (DD) coils have a greater tolerance to offset alignment, the average coupling and percentage of area that exceeds the interoperable requirement is lower than that of the stretched track (ST).
机译:动态无线电力传输(WPT)技术使电动汽车从道路,同时在运动供电。这可以克服一系列焦虑和贫困的问题为电池的大存储容量。为了做到这一点的路(源)和车辆(皮卡)线圈的设计必须是兼容的,所谓的互操作性。评估这种互操作性的方法。这使用由三种不同类型的道路上的源线圈的产生的磁场形状和极性的调查。它还认为,需要在车辆侧,以确保互操作性的修改得以实现。为了产生精确评估两者的有限元分析和实验验证被用于测量所述源和拾取器位置范围之间的磁耦合。当耦合因子(K)超过研究表明0.1然后这个组合的互操作性是可能的。这表明,虽然该捻拉伸轨道(TST)和集总双d(DD)线圈具有较大的公差,以抵消对准,超过该可互操作的要求是比拉伸轨道的下部的平均偶联和面积的百分比(ST )。

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