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Characterization of path loss and absorption for a wireless radio frequency link between an in-body endoscopy capsule and a receiver outside the body

机译:表征体内内窥镜胶囊与身体外接收器之间的无线射频链路的路径损耗和吸收

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摘要

Physical-layer characterization is important for design of in-to-out body communication for wireless body area networks (WBANs). This paper numerically investigates the path loss and absorption of an in-to-out body radio frequency (RF) wireless link between an endoscopy capsule and a receiver outside the body using a 3D electromagnetic solver. A spiral antenna in the endoscopy capsule is tuned to operate in the Medical Implant Communication Service (MICS) band at 402 MHz, accounting for the properties of the human body. The influence of misalignment, rotation of the capsule, and three different human models are investigated. Semi-empirical path loss models for various homogeneous tissues and 3D realistic human body models are provided for manufacturers to evaluate the performance of in-body to out-body WBAN systems. The specific absorption rate (SAR) in homogeneous and heterogeneous body models is characterized and compliance is investigated.
机译:物理层表征对于无线人体局域网(WBAN)的由内而外的人体通信设计非常重要。本文对使用3D电磁求解器的内窥镜胶囊与体外接收器之间的从内到外的人体射频(RF)无线链接的路径损耗和吸收进行了数值研究。调整了内窥镜胶囊中的螺旋天线,使其可以在402 MHz的医疗植入物通信服务(MICS)频带中运行,这是人体的特性。研究了未对准,胶囊旋转和三种不同人体模型的影响。为制造商提供了用于各种同质组织的半经验路径损耗模型和3D逼真的人体模型,以评估体内到体外WBAN系统的性能。表征了均质和异质体模型中的比吸收率(SAR),并研究了顺应性。

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