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In-body path loss models for implants in heterogeneous human tissues using implantable slot dipole conformal flexible antennas

机译:使用可植入槽偶极共形柔性天线的异质人体组织中植入物的体内路径损耗模型

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摘要

A wireless body area network (WBAN) consists of a wireless network with devices placed close to, attached on, or implanted into the human body. Wireless communication within a human body experiences loss in the form of attenuation and absorption. A path loss model is necessary to account for these losses. In this article, path loss is studied in the heterogeneous anatomical model of a 6-year male child from the Virtual Family using an implantable slot dipole conformal flexible antenna and an in-body path loss model is proposed at 2.45 GHz with application to implants in a human body. The model is based on 3D electromagnetic simulations and is compared to models in a homogeneous muscle tissue medium.
机译:无线人体局域网(WBAN)由无线网络组成,其中的设备放置在人体附近,附着在人体上或植入人体中。人体内部的无线通信会遭受衰减和吸收形式的损失。需要路径损耗模型来解决这些损耗。在本文中,使用植入式缝隙偶极形共形柔性天线,对来自虚拟家庭的6岁男孩的异质解剖模型进行了路径损耗研究,并提出了在2.45 GHz频率下的体内路径损耗模型,并将其应用于植入物。人体。该模型基于3D电磁仿真,并与均质肌肉组织介质中的模型进行比较。

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