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A Figure-of-Merit for Designing High-Performance Inductive Power Transmission Links

机译:a图品质因数为设计高性能感应电能传输链路

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摘要

Power transfer efficiency (PTE) and power delivered to the load (PDL) are two key inductive link design parameters that relate to the power source and driver specs, power loss, transmission range, robustness against misalignment, variations in loading, and interference with other devices. Designers need to strike a delicate balance between these two because designing the link to achieve high PTE will degrade the PDL and vice versa. We are proposing a new figure-of-merit (FoM), which can help designers to find out whether a two-, three-, or four-coil link is appropriate for their particular application and guide them through an iterative design procedure to reach optimal coil geometries based on how they weigh the PTE versus PDL for that application. Three design examples at three different power levels have been presented based on the proposed FoM for implantable microelectronic devices, handheld mobile devices, and electric vehicles. The new FoM suggests that the two-coil links are suitable when the coils are strongly coupled, and a large PDL is needed. Three-coil links are the best when the coils are loosely coupled, the coupling distance varies considerably, and large PDL is necessary. Finally, four-coil links are optimal when the PTE is paramount, the coils are loosely coupled, and their relative distance and alignment are stable. Measurement results support the accuracy of the theoretical design procedure and conclusions.
机译:功率传输效率(PTE)和传递给负载的功率(PDL)是与电源和驱动器规格,功率损耗,传输范围,抗错位的稳健性,负载变化以及与其他干扰相关的两个关键的电感链路设计参数设备。设计人员需要在这两者之间达到微妙的平衡,因为设计实现高PTE的链路会降低PDL,反之亦然。我们正在提议一种新的品质因数(FoM),它可以帮助设计人员找出两线圈,三线圈或四线圈的链接是否适合其特定应用,并通过迭代的设计过程来指导他们达到目标。最佳线圈几何形状取决于它们如何权衡该应用的PTE与PDL。基于所提出的可植入微电子设备,手持移动设备和电动汽车的FoM,已经提出了三种不同功率水平的三个设计实例。新的FoM建议,当线圈牢固耦合且需要较大的PDL时,两个线圈链接是合适的。当线圈松散耦合时,三线圈链接是最佳的,耦合距离变化很大,并且需要较大的PDL。最后,当PTE最重要,线圈松散耦合且它们的相对距离和对齐稳定时,四线圈链接是最佳的。测量结果支持理论设计程序和结论的准确性。

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  • 作者

    Mehdi Kiani; Maysam Ghovanloo;

  • 作者单位
  • 年(卷),期 -1(60),11
  • 年度 -1
  • 页码 5292–5305
  • 总页数 40
  • 原文格式 PDF
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