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On Ultra Wideband Channel Modeling for In-Body Communications

机译:关于对体通信的超宽带频道建模

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Innovative medical applications such as implant wireless sensors for health monitoring, automatic drug deliverance, etc. can be realized with the use of ultra wideband (UWB) radio technology. Nevertheless, for efficient design of wireless systems operating inside the human body a radio communication channel model is essential. Although a lot of research effort has recently been devoted to the characterization of the on-body UWB radio communication channel, just a few works describing the radio propagation inside the human body have been reported. To address this problem, a computational study of the propagation of UWB signals through human tissues in the 0.1-1GHz and 1-6GHz frequency bands is presented in this paper. This is based on numerical simulations using a heterogeneous anatomical model of the human body with frequency dependent tissue material properties. Subsequently, a statistical channel model is introduced for UWB in-body communications in the 1-6GHz frequency band. The model is provided for two typical depths inside the human chest. This work contributes to the practical design of UWB medical implant communication systems.
机译:利用超宽带(UWB)无线电技术,可以实现创新的医疗应用,如健康监测,自动药物拯救等的植入无线传感器。然而,对于在人体内部操作的无线系统的有效设计,无线电通信信道模型至关重要。虽然最近已经致力于对身体UWB无线电通信信道的表征进行了许多研究工作,但仅报告了描述人体内部的无线电传播的作品。为了解决这个问题,本文提出了通过人体组织的UWB信号传播的计算研究。这是基于使用具有频率依赖性组织材料性能的人体的异质解剖模型的数值模拟。随后,在1-6GHz频带中引入统计信道模型以用于UWB体内通信。该模型用于人类胸部内的两个典型深度。这项工作有助于UWB医疗植入式通信系统的实际设计。

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