The Effects of Monolayer Planar Coil Turns Change in Low-Frequency Wireless Power Transfer

Pengcheng Cao, Yong Lu, Changbo Lu
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Abstract

The structure of coil in wireless power transfer affects the transmission performance. When a fixed excitation source is matched with appropriate transmitting and receiving coils, the electromagnetic energy can be fully utilized. In order to study the lightweight requirements on special occasions, the relationship between coil turns and receiving performance must be investigated. This paper designs and uses the simplest structure of monolayer planar coils which winded closely by ordinary copper enameled wire and fixed in 25 mm inner diameter, 0.5 mm strand diameter. According to modeling and simulation, the coil parameters and mutual inductance are obtained after the transmitting and receiving coils turns changed respectively, the simulation results are also verified by experiments. Finally, based on experiments, the variation empirical model of receiver voltage is concluded, which can provides a prediction model for the wireless charging power control of lightweight equipment.
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单层平面线圈匝数变化对低频无线电力传输的影响
无线电力传输中线圈的结构直接影响传输性能。当固定的激励源与合适的发射和接收线圈相匹配时,可以充分利用电磁能量。为了研究特殊场合的轻量化要求,必须研究线圈匝数与接收性能之间的关系。本文设计并采用结构最简单的单层平面线圈,用普通铜漆包线紧密缠绕,内径25mm,股径0.5 mm固定。通过建模和仿真,分别得到了发射线圈和接收线圈匝数变化后的线圈参数和互感,并通过实验验证了仿真结果。最后,在实验的基础上,得出了接收机电压变化的经验模型,为轻型设备的无线充电功率控制提供了预测模型。
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