PowerPACK:用于可穿戴设备的无线配电系统

T. Deyle, M. Reynolds
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引用次数: 10

摘要

由于在许多普适性计算研究和部署场景中普遍存在小型电池供电设备,以及当发现某个特定设备由于内部电池放电而无用时遇到的挫折,我们提出了一种背包穿戴式无线(非接触式)配电系统。该系统旨在将电力从单点发电或批量存储分配到各种端点设备。终端设备可以操作或从中央电源为内部电池充电,当它们被放在背包的电源口袋里。我们还演示了跨电源链路的低带宽(10 Kbps)双向通信。该通信通道可用于清点耦合设备,优先考虑向更重要的设备提供电力,检测未经授权的设备移除,验证电力接收方,或使用蓝牙,WiFi或其他高数据速率连接分发加密密钥以进行进一步的数据交换。使用125 KHz谐振电感耦合机制和动态调谐系统,我们证明了小型(USB类)设备负载的功率传输效率为80%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PowerPACK: A wireless power distribution system for wearable devices
Motivated by the prevalence of small, battery-powered devices in many pervasive computing research and deployment scenarios, and the frustration encountered when a particular device is found to be useless due to a discharged internal battery, we present a backpack-worn wireless (non-contact) power distribution system. This system is designed to distribute power from a single point of generation or bulk storage to a variety of endpoint devices. Endpoint devices can operate or recharge their internal batteries from the central source when they are stowed in a powered pocket in the backpack. We also demonstrate low bandwidth (10 Kbps) bidirectional communication across the power link. This communication channel could be used to inventory the coupled devices, prioritize power delivery to more important devices, detect the unauthorized removal of a device, authenticate the recipients of power, or distribute cryptographic keys for further data exchange using a Bluetooth, WiFi, or another high data rate connection. Using a 125 KHz resonant inductive coupling mechanism and a dynamic tuning system, we demonstrate a power transfer efficiency of 80% for small (USB class) device loads.
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