论文标题

感知触觉互联网的多通道基于RFID的手指增强设备的性能

Sensing Performance of Multi-Channel RFID-based Finger Augmentation Devices for Tactile Internet

论文作者

Naccarata, Federica, Bianco, Giulio Maria, Marrocco, Gaetano

论文摘要

射频手指增强装置(R-FADS)是最近引入的表皮射频识别(RFID)传感器标签,该传感器标签附着在手指上,与戴着衣着的读取器进行通信。这些设备有望在短期内启用触觉互联网(TI)应用程序。基于自动调整RFID微芯片的R-FAD可以用作接触物体材料的介电探针。但是,由于手指对象相互作用几乎无法预测的内在变异性,因此单个感觉手指(单通道设备)不足以保证可靠的数据采样。这些局限性可以通过利用多频道的R-FAD传感手指来克服。在本文中,由封装在软弹性体中的传感器组成的多渠道R-FAD的介电感应性能是数值和实验表征的,涉及一组志愿者。传感器间耦合可以忽略不计,因此可以同时进行独立的介电测量。多传感器配置允许在广泛的介电常数中为接触的对象提供100%的可靠性。此外,实验表明,多通道测量值可以使单通道案例的测量不确定性减半。可实现的精度适合区分低,中和高效率材料。

Radiofrequency finger augmentation devices (R-FADs) are a recently introduced class of epidermal radiofrequency identification (RFID) sensor-tags attached to the fingers, communicating with a body-worn reader. These devices are promising candidates to enable Tactile Internet (TI) applications in the short term. R-FAD based on auto-tuning RFID microchips can be used as dielectric probes for the material of touched objects. However, due to the nearly unpredictable intrinsic variability of finger-object interaction, a single sensorized finger (single-channel device) is not enough to guarantee reliable data sampling. These limitations can be overcome by exploiting a multi-channel R-FAD sensorizing multiple fingers of the hand. In this paper, the dielectric-sensing performance of a multi-channel R-FAD, composed of sensors encapsulated into soft elastomers, is numerically and experimentally characterized, involving a set of volunteers. The inter-sensor coupling is negligible, thus enabling simultaneous independent dielectric measurements. The multi-sensor configuration allows for 100% reliability of the on-hand communication link for touched objects in a wide range of permittivity. Experiments moreover demonstrate that multi-channel measurements can halve the measurement uncertainty of the single-channel case. The achievable precision is suitable to discriminate among low-, medium-, and high-permittivity materials.

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