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Garment level power distribution for wearables using inductive power transfer

机译:使用感应功率传输的可穿戴设备的服装级功率分配

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摘要

Wearable and smart devices are gaining in popularity, with many users now using multiple devices. Each of these devices requires individual charging and power maintenance. This paper proposes power sharing between multiple wearables to alleviate some of the burden of charging multiple devices. To achieve wearable and smart device power sharing, we propose using the garments we wear as a power distribution backbone. To allow non-contact power transfer between garments, bi-directional inductive power transfer is used. We demonstrate a novel coil topology called Feed Coils constructed from flexible materials to aid garment integration and user comfort. Our system complies with international guidelines on time-varying magnetic field exposure to human tissue, allowing the system to be operated in close proximity to the body. Three preliminary experiments are conducted to characterize the bi- directional inductive power sharing system and to investigate the feasibility and human factors impacting wearable and smart device power sharing.
机译:可穿戴和智能设备越来越受欢迎,许多用户现在正在使用多种设备。这些设备中的每一个都需要单独的充电和电源维护。本文提出了多个可穿戴设备之间的电源共享,以减轻为多个设备充电的负担。为了实现可穿戴设备和智能设备的功率共享,我们建议使用我们穿的服装作为配电主干。为了允许服装之间的非接触式功率传输,使用了双向感应功率传输。我们演示了一种新颖的线圈拓扑结构,称为“进给线圈”,该线圈拓扑结构由柔性材料构成,以帮助服装集成和用户舒适度。我们的系统符合随时间变化的磁场对人体组织的暴露的国际准则,使该系统可以在人体附近操作。进行了三个初步实验来表征双向感应功率共享系统,并研究影响可穿戴设备和智能设备功率共享的可行性和人为因素。

著录项

  • 作者

    Worgan Paul; Fraser Mike C;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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