Channel characterization and diversity feasibility for in-body to on-body communication using low-band UWB signals

Jingjing Shi, Jianqing Wang
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引用次数: 27

Abstract

This paper aims at the feasibility study of a wireless link for capsule endoscope by using of low-band ultra wideband (UWB) signals. The UWB technique has a potential to provide real-time image transmission from the inside to outside of the body, but it suffers from the large attenuation in the human tissue. We employ the finite difference time domain (FDTD) numerical technique together with an anatomical human body model to derive the channel characteristics such as the path loss and shadow fading. We also investigate the feasibility to use a space diversity technique to improve the communication performance. The results have shown a possibility to use the low-band UWB technique to realize a data rate as high as 80 Mbps for the capsule endoscope application.
利用低频带超宽带信号进行体对体通信的信道特性和分集可行性
本文旨在研究利用低频段超宽带(UWB)信号实现胶囊内窥镜无线链路的可行性。超宽带技术有潜力提供从体内到体外的实时图像传输,但它在人体组织中受到较大衰减的影响。我们采用时域有限差分(FDTD)数值方法,结合人体解剖模型,推导了信道的路径损失和阴影衰落等特性。本文还探讨了利用空间分集技术提高通信性能的可行性。结果表明,在胶囊内窥镜应用中,使用低频段超宽带技术实现高达80mbps的数据速率是可能的。
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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