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Six Degrees of Freedom Mobile Inductive Power Transfer by Crossed Dipole Tx and Rx Coils

机译:交叉偶极Tx和Rx线圈的六自由度移动感应功率传输

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Crossed dipole coils for the wide-range 3-D omnidirectional inductive power transfer (IPT) are proposed. Free positioning of a plane receiving (Rx) coil is obtained for an arbitrary direction within 1m from a plane transmission (Tx) coil. Both the Tx and Rx coils consists of crossed dipole coils with an orthogonal phase difference; hence, a rotating magnetic field is generated from the Tx, which enables the Rx to receive power vertically or horizontally. Thus, the 3-D omnidirectional IPT is first realized for both the plate type Tx and Rx coils, which is crucial for practical applications, where volumetric coil structure is highly prohibited. This optimized configuration of coils has been obtained through a general classification of power transfer and searching for mathematical constraints on multi-D omnidirectional IPT. Conventional loop coils are thoroughly analyzed, and verified to be inadequate for the plate-type omnidirectional IPT in this paper. Simulation-based design of the proposed crossed dipole coils for a uniform magnetic field distribution is provided, and the 3-D omnidirectional IPT is experimentally verified by prototype Rx coils for a wireless power­ zone of 1 m with a prototype Tx coil of 1 m at an operating frequency of 280 kHz, meeting the power matters alliance. The maximum overall efficiency was 33.6% when the input power was 100 W.
机译:提出了用于宽范围3D全向感应功率传输(IPT)的交叉偶极线圈。在距平面发射(Tx)线圈1m以内的任意方向上,均可获得平面接收(Rx)线圈的自由定位。 Tx和Rx线圈均由具有正交相位差的交叉偶极线圈组成。因此,从Tx产生旋转磁场,使Rx可以垂直或水平接收功率。因此,首先针对平板型Tx和Rx线圈都实现了3-D全向IPT,这对于高度禁止体积线圈结构的实际应用至关重要。通过对功率传输进行一般分类并搜索多维全向IPT的数学约束,可以获得线圈的优化配置。本文对常规环形线圈进行了彻底的分析,并验证了其不足以实现板式全向IPT。提供了建议的交叉偶极子线圈的基于仿真的设计,以实现均匀的磁场分布,并通过无线电力为1 m的原型Rx线圈和1 m的Tx原型线圈对3D全向IPT进行了实验验证。 280 kHz的工作频率,满足电源联盟的要求。当输入功率为100W时,最大总效率为33.6%。

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