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Improved reception of in-body signals by means of a wearable multi-antenna system

机译:通过可穿戴多天线系统改善接收或体内信号

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摘要

High data-rate wireless communication for in-body human implants is mainly performed in the 402-405 MHz Medical Implant Communication System band and the 2.45 GHz Industrial, Scientific and Medical band. The latter band offers larger bandwidth, enabling high-resolution live video transmission. Although in-body signal attenuation is larger, at least 29 dB more power may be transmitted in this band and the antenna efficiency for compact antennas at 2.45 GHz is also up to 10 times higher. Moreover, at the receive side, one can exploit the large surface provided by a garment by deploying multiple compact highly efficient wearable antennas, capturing the signals transmitted by the implant directly at the body surface, yielding stronger signals and reducing interference. In this paper, we implement a reliable 3.5 Mbps wearable textile multi-antenna system suitable for integration into a jacket worn by a patient, and evaluate its potential to improve the In-to-Out Body wireless link reliability by means of spatial receive diversity in a standardized measurement setup. We derive the optimal distribution and the minimum number of on-body antennas required to ensure signal levels that are large enough for real-time wireless endoscopy-capsule applications, at varying positions and orientations of the implant in the human body.
机译:用于体内人体植入物的高数据速率无线通信主要在402-405 MHz医疗植入物通信系统频段和2.45 GHz工业,科学和医疗频段中进行。后一个频带提供更大的带宽,从而实现高分辨率的实时视频传输。尽管体内信号衰减较大,但在该频带中至少可以传输29 dB以上的功率,并且2.45 GHz紧凑型天线的天线效率也高出10倍。此外,在接收侧,可以通过部署多个紧凑高效的可穿戴天线,利用植入物直接在体表捕获信号,从而产生更强的信号并减少干扰,来利用服装提供的大表面。在本文中,我们实施了一个可靠的3.5 Mbps可穿戴纺织品多天线系统,该系统适用于集成到患者所穿的夹克中,并通过空间接收分集来评估其改善In-to-Out Body无线链路可靠性的潜力。标准化的测量设置。我们得出最佳分布和人体天线的最小数量,以确保在植入物在人体中的不同位置和方向上,信号水平足以满足实时无线内窥镜胶囊应用的需求。

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