首页> 外文会议>ASME annual dynamic systems and control conference >USING SENSING COILS TO DETECT AND CORRECT LATERAL MISALIGNMENTS IN AN INDUCTIVE POWER-TRANSFER WIRELESS CHARGING SYSTEM
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USING SENSING COILS TO DETECT AND CORRECT LATERAL MISALIGNMENTS IN AN INDUCTIVE POWER-TRANSFER WIRELESS CHARGING SYSTEM

机译:使用感应线圈在感应式电力传输无线充电系统中检测和纠正横向错误

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Inductive power transfer (IPT) remains one of the most common ways to achieve wireless power transfer (WPT), operating on the same electromagnetic principle as electrical transformers but with an air core. IPT has recently been implemented in wireless charging of consumer products such as smartphones and electric vehicles. However, one major challenge with using IPT remains ensuring precise alignment between the transmitting and receiving coils so that maximum power transfer can take place. In this paper, the use of additional sensing coils to detect and correct lateral misalignments in an IPT systems is modeled and tested. The sensing coils exploit magnetic-field symmetry to give a nonlinear measure of misalignment direction and magnitude. Experiments using such sensing coils give a misalignment-sensing resolution of less than 1 mm when applied to a common smartphone wireless charging system. Voltage readings from the sensing coils are used for feedback control of an experimental two-dimensional coil positioner. This system is able to reduce lateral misalignments to less than y/2 mm in real time, allowing for efficient power transfer. The results of this experiment give confidence that similar sensing coils can be used to reduce lateral misalignments in scaled IPT systems, such as electric-vehicle wireless chargers. Keywords: wireless charging, inductive power transfer, misalignment reduction
机译:感应式功率传输(IPT)仍然是实现无线功率传输(WPT)的最常见方法之一,其工作原理与变压器相同,但具有空芯。 IPT最近已在智能手机和电动汽车等消费产品的无线充电中实现。然而,使用IPT的主要挑战仍然是确保发射线圈和接收线圈之间的精确对准,以实现最大的功率传输。在本文中,对附加的感应线圈在IPT系统中检测和校正横向未对准的使用进行了建模和测试。感应线圈利用磁场对称性来提供未对准方向和幅度的非线性度量。使用此类感应线圈的实验在应用于常见的智能手机无线充电系统时,其对准误差的分辨率小于1毫米。来自感测线圈的电压读数用于实验性二维线圈定位器的反馈控制。该系统能够将横向错位实时减少到小于y / 2 mm,从而实现了有效的功率传输。该实验的结果使人相信,类似的感应线圈可用于减少按比例缩放的IPT系统(如电动汽车无线充电器)中的横向未对准情况。关键字:无线充电,感应式功率传输,减少失准

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