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Scalable adaptive wireless powering of multiple electronic devices in an over-moded cavity

机译:过模腔中多个电子设备的可扩展自适应无线供电

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This paper presents a method for wireless powering of multiple electronic devices placed in an over-moded 2.2-GHz shielded microwave cavity using watt-level high-efficiency sources. Two transmitters based on a 77% efficient pHEMT PA to feed the cavity incoherently via strategically placed microstrip probes. The field patterns inside the cavity result from multiple excited modes ensuring a relatively uniform power density. Narrowband frequency modulation of the sources further improves uniformity. Each electronic device contains a rectenna, power management circuitry, and a rechargeable battery. A microcontroller performs power management and the available battery power is monitored using a low-power 900-MHz transceiver and communicated through a separate monopole probe and displayed external to the cavity. The approach is scalable in terms of power level, field profile, number of devices and overall size. Applications include personal electronics, powering of toys and powering of products in storage crates.
机译:本文提出了一种使用瓦特级高效电源为放置在过调制的2.2 GHz屏蔽微波腔中的多个电子设备进行无线供电的方法。两个基于效率达77%的pHEMT PA的变送器通过策略性放置的微带探头不相干地喂食腔体。腔内的场模式由多种激发模式产生,从而确保了相对均匀的功率密度。源的窄带频率调制进一步提高了均匀性。每个电子设备均包含整流天线,电源管理电路和可充电电池。微控制器执行电源管理,并使用低功耗900MHz收发器监控可用的电池电量,并通过单独的单极探头进行通信,并显示在腔体外部。该方法可在功率水平,现场配置文件,设备数量和整体尺寸方面进行扩展。应用包括个人电子设备,玩具的供电以及存储箱中产品的供电。

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