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Analysis of co-planar intermediate coil structures in inductive power transfer systems

机译:电感动力传输系统中共平面中间线圈结构分析

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Intermediate couplers have been shown to increase the coupling from primary to secondary pads in inductive power transfer (IPT) systems. This paper investigates embedding a co-planar intermediate coupler coil, with the primary coil inside the primary pad, to boost coupling to the secondary pad given there have been recent works indicating this will have similar benefits. Several coil designs are simulated and a mathematical model is developed to evaluate the efficiency of the parallel-parallel tuned system. As shown, there appears to be no benefit in having a co-planar, independently tuned intermediate coupler with parallelparallel tuned systems. Boosts in coupling and efficiency are a result of adding extra current carrying windings to the primary pad and simulations show that operating the system as a traditional two coil IPT system is simpler for the same performance. An experimental system was also constructed to validate the simulations.
机译:已经示出了中间耦合器以将初级焊盘(IPT)系统中的辅助焊盘增加到初级耦合器。本文研究了嵌入平面中间耦合线圈,主焊盘内的初级线圈,提升耦合到次级垫,据指示这将具有类似的益处。模拟了几个线圈设计,开发了数学模型以评估并行平行调谐系统的效率。如图所示,在具有具有平行共同调谐系统的共平面的独立调谐的中间耦合器中似乎没有任何益处。耦合和效率的提升是向主焊盘添加额外电流载带的结果,模拟显示,操作系统作为传统的两个线圈IPT系统的性能更简单。还构造了一个实验系统以验证模拟。

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