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A scalable 2.9mW 1Mb/s eTextiles body area network transceiver with remotely powered sensors and bi-directional data communication

机译:可扩展的2.9mW 1mb / s eTextiles体域网收发器,具有远程传感器和双向数据通信

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摘要

Advances in sensor design have made ambulatory health monitoring possible and have created the need for low-power communication systems to replace bulkier traditional links. Micropower sensors should also be powered by a non-local energy source for system miniaturization and long life. Recently proposed communication systems using wireless body area networks [1,2] and body-coupled communication [3] suffer from high path loss around the human body for efficient remote power delivery. In contrast, eTextiles are becoming an increasingly popular technology for efficiently powering and communicating with such sensors [4-6] due to wide coverage around the human body combined with low path loss and comfort of use.
机译:传感器设计的进步使动态健康监测成为可能,并产生了对低功率通信系统的需求,以取代笨重的传统链路。微功率传感器还应该由非本地能源供电,以实现系统小型化和长寿命。最近提出的使用无线人体局域网[1,2]和人体耦合通信[3]的通信系统遭受了围绕人体的高路径损耗,从而无法进行有效的远程功率传输。相比之下,由于人体周围的覆盖范围广,路径损耗低,使用舒适,电子纺织成为一种越来越有效地为此类传感器供电和与之通信的技术[4-6]。

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