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The channel measurement and modeling of implantable antenna at 6.0 GHz for wireless body area network

机译:无线人体局域网中6.0 GHz植入式天线的信道测量和建模

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The good propagation link between implantable antenna and base station is necessary in order to create reliable link communication. Therefore, the channel propagation links between both antennas are verified by distribution fits via MATLAB software and calculation based on the related equation. Several body links and movements are considered in order to cover all the possibilities. The wearable antenna which operates at frequency 6.0GHz is attached to the body at a number of positions and orientations and connected to the calibrated VNA by 1 meter long flexible coaxial cables. Based on the investigations, the link between implantable antenna (placed in canola oil) and wearable antenna attached to the chest has lowest losses as the propagation between both antennas is categorized as LOS propagation. According to the results of fitting the average measured path gain data to various probability distributions, it can conclude that the variation channel of in- to- on body communication in various environments is well described by lognormal, rician and nakagami distribution.
机译:为了创建可靠的链路通信,植入式天线与基站之间的良好传播链路是必需的。因此,通过MATLAB软件的分布拟合和基于相关方程的计算,验证了两个天线之间的信道传播链路。为了涵盖所有可能性,考虑了几个身体的链接和动作。工作频率为6.0GHz的可穿戴天线在多个位置和方向上均固定在人体上,并通过1米长的柔性同轴电缆连接到已校准的VNA。根据调查,可植入天线(置于菜籽油中)和连接到胸部的可穿戴天线之间的链接损耗最低,因为这两个天线之间的传播被归类为LOS传播。根据将平均测得的路径增益数据拟合到各种概率分布的结果,可以得出结论,通过对数正态分布,rician和nagakami分布可以很好地描述各种环境中的身体内部通信的变化通道。

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