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Vehicle Position Measurement and Misalignment-Effect-Eliminated Metal Object Detection for Wireless EV Charging System: A Dual-Purpose Design of Sensing Coils

机译:无线EV充电系统的车辆位置测量和未对准 - 效果消除的金属对象检测:一种传感线圈的两用目的设计

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Vehicle Position Measurement (VPM) and Metal Object Detection (MOD) are indispensable to facilitate the commercialization of wireless charging systems for electric vehicles (EVs). In this paper, these two functions are integrated to the charging systems by simply adding a set of two-layer sensing coils. The proposed MOD method takes the advantage of symmetrical magnetic field produced by coupling coils and the uniform field distribution in the center area. By detecting the induced voltage difference of sensing coils, not only the existence of metal objects is checked, but also their positions could be obtained. Moreover, this method also provides a superior performance in view of easy fabrication, high sensitivity and no-blind-zone characteristic. More importantly, this method takes the effect of misalignment of EVs on the object detection accuracy into account by introducing a self-zero-setting method. The VPM function is realized by calculating the mutual inductance of receiving coils and sensing coils online with the virtue of the inherent resonance nature of charging circuit. The proposed design is verified by finite element simulations. When an iron nail appears in the transmitting coils, the voltage difference of corresponding sensing coil exceeds 0.4 V, which is normally lower than 0.1 V.
机译:车辆位置测量(VPM)和金属物体检测(MOD)是必不可少的,以便于为电动车辆(EVS)进行无线充电系统的商业化。在本文中,通过简单地添加一组双层传感线圈,这两个功能集成到充电系统。所提出的MOD方法采用通过耦合线圈产生的对称磁场和中心区域中的均匀场分布的优点。通过检测感测线圈的感应电压差,不仅检查了金属物体的存在,而且还可以获得它们的位置。此外,该方法还考虑了易于制造,高灵敏度和无盲区域特性的卓越性能。更重要的是,通过引入自零设置方法,这种方法通过引入自零设置方法对EVS对对象检测精度的效果进行效果。通过计算接收线圈和在线感测线圈的相互电感来实现VPM功能,以充电电路的固有共振性质在线接收线圈和传感线圈。通过有限元模拟验证所提出的设计。当透射线圈中出现铁钉时,相应的传感线圈的电压差超过0.4V,该v通常低于0.1V。

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