Efficient through-waveguide wireless power transfer for body area networks

A. Vorobyov, Vladimir Kopta, J. Farserotu, C. Enz
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引用次数: 1

Abstract

This paper focuses on a solution for wireless powering of sensor nodes embedded in an artificial “skin”, used to provide a sense of touch to persons using prosthetic limbs. The artificial “skin”, that consists of an inner dielectric layer with top and bottom soft metallization, acts as a waveguide, providing means to efficiently guide electromagnetic power to sensor nodes. The proposed solution allows removal of wired connections between soft metallization layers and sensor nodes, that are identified as the primary source of failure. Depending on node distances and propagation conditions, measurements indicate that the available power at the receiving node ranges from 46.8 % to 66.1 % of the transmitted power. Lower efficiency, compared to wired powering, is thus traded for higher reliability and reduced production cost.
体域网络的高效通波导无线能量传输
本文重点研究了嵌入人造“皮肤”中的传感器节点的无线供电解决方案,该“皮肤”用于为使用假肢的人提供触觉。人造“皮肤”由上下软金属化的内部介电层组成,充当波导,提供有效引导电磁功率到传感器节点的手段。提出的解决方案允许移除软金属化层和传感器节点之间的有线连接,这被认为是故障的主要来源。根据节点距离和传播条件的不同,测量表明接收节点的可用功率在发射功率的46.8%到66.1%之间。与有线供电相比,较低的效率可以换取更高的可靠性和更低的生产成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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