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Characterization of On-Body Communication Channel and Energy Efficient Topology Design for Wireless Body Area Networks

机译:无线人体局域网的人体通信通道表征和节能拓扑设计

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Wireless body area networks (WBANs) offer many promising new applications in the area of remote health monitoring. An important element in the development of a WBAN is the characterization of the physical layer of the network, including an estimation of the delay spread and the path loss between two nodes on the body. This paper discusses the propagation channel between two half-wavelength dipoles at 2.45 GHz, placed near a human body and presents an application for cross-layer design in order to optimize the energy consumption of different topologies. Propagation measurements are performed on real humans in a multipath environment, considering different parts of the body separately. In addition, path loss has been numerically investigated with an anatomically correct model of the human body in free space using a 3-D electromagnetic solver. Path loss parameters and time-domain channel characteristics are extracted from the measurement and simulation data. A semi-empirical path loss model is presented for an antenna height above the body of 5 mm and antenna separations from 5 cm up to 40 cm. A time-domain analysis is performed and models are presented for the mean excess delay and the delay spread. As a cross-layer application, the proposed path loss models are used to evaluate the energy efficiency of single-hop and multihop network topologies.
机译:无线人体局域网(WBAN)在远程健康监控领域提供了许多有希望的新应用。 WBAN开发中的一个重要元素是网络物理层的表征,包括估计延迟扩展和身体上两个节点之间的路径损耗。本文讨论了放置在人体附近的两个在2.45 GHz处的半波长偶极子之间的传播通道,并提出了跨层设计的应用程序,以优化不同拓扑的能耗。传播测量是在多径环境中对真实人类进行的,要分别考虑人体的不同部位。此外,已经使用3-D电磁求解器通过自由空间中人体的解剖学正确模型对路径损耗进行了数值研究。从测量和仿真数据中提取路径损耗参数和时域信道特性。提出了一个半经验路径损耗模型,该模型针对天线高度超过5毫米,天线间距从5厘米到40厘米的问题。进行时域分析,并给出平均超额延迟和延迟扩展的模型。作为跨层应用程序,提出的路径损耗模型用于评估单跳和多跳网络拓扑的能量效率。

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