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Numerical and Experimental Characterization of Wrist-Fingers Communication Link for RFID-Based Finger Augmented Devices

机译:基于RFID的手指增强设备腕指通信链路的数值和实验表征

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Radio frequency-identification finger-augmented devices (R-FAD) identify a particular wearable technology suitable to turn the human fingers into enhanced sensing surfaces to restore lost senses in impaired people as well as to augment the existing ones. The communication channel of R-FAD, involving a reader's antenna placed onto the wrist and tag antennas stuck onto the fingers, is here characterized in the UHF radio frequency identification (RFID) band by means of both numerical simulations, accounting for several options of the system, and an experimental campaign with volunteers asked to reproduce natural gestures of the hands. The study identifies the most appropriate placement of the devices and, above all, it quantifies the robustness of the link against the human variability. The channel follows a lognormal cumulative probability law indicating that the minimum required power to establish a reliable RFID link is 18-27 dBm depending on the chip sensitivity. Measurements finally revealed a remarkable correlation of the minimum required power from the reader with the volume of the hand.
机译:射频识别手指增强设备(R-FAD)识别一种特殊的可穿戴技术,该技术可将人的手指变成增强的感应表面,以恢复受损人士的失落感并增强现有的功能。 R-FAD的通信通道,包括放置在手腕上的阅读器天线和粘贴在手指上的标签天线,在此通过两个数值模拟来表征为UHF射频识别(RFID)频段,这说明了R-FAD的几种选择系统,以及一项要求志愿者重现手部自然姿势的实验性运动。这项研究确定了设备的最合适位置,最重要的是,它量化了针对人类可变性的链接的健壮性。该通道遵循对数正态累积概率定律,表明建立可靠的RFID链路所需的最小功率为18-27 dBm,具体取决于芯片的灵敏度。测量最终表明,阅读器的最低要求功率与手的体积之间存在显着的相关性。

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