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Multi-hop and channel modelling for wireless body area networks at 60 GHz

机译:60 GHz无线体域网的多跳和信道建模

摘要

This thesis presents work on antennas and propagation for WBANs at 60 GHz. First, a compact, wearable Vivaldi antenna and Vivaldi antenna array covering the whole unlicensed band from 57 to 64 GHz are proposed to overcome the shadowing due to human movements. Second, multi-hop channels for on-body communication at 60 GHz are investigated through applying the proposed antennas, and it is found that multi-hop wireless network adaption can increase reliability when the separation between sensors exceeds 40 cm compared to single-hop. Radiation pattern diversity is selected among different diversity techniques for providing stable links for 60 GHz WBANs. Results show that radiation pattern diversity enlarges the signal coverage area on the human body, which compensates for the narrow beamwidth antenna, thus more stable links can be established. Finally, a representative channel model for 60 GHz on-body network with an appropriate power control method is presented. With this model and power control method, it has been proved in this thesis that a multi-hop method for on-body communication at 60 GHz is feasible to establish a stable network for different applications.
机译:本文介绍了60 GHz WBAN的天线和传播方面的工作。首先,提出了一种紧凑的可穿戴式Vivaldi天线和覆盖整个57至64 GHz无执照频段的Vivaldi天线阵列,以克服人类运动造成的阴影。其次,通过应用建议的天线研究了60 GHz人体通信的多跳信道,发现与单跳相比,当传感器之间的距离超过40 cm时,多跳无线网络自适应可以提高可靠性。在不同的分集技术中选择辐射图分集,以为60 GHz WBAN提供稳定的链路。结果表明,辐射方向图的多样性扩大了人体的信号覆盖范围,弥补了窄波束宽度天线的不足,从而可以建立更稳定的链路。最后,提出了具有适当功率控制方法的60 GHz人体网络的典型信道模型。利用该模型和功率控制方法,证明了在60 GHz频率下进行人体通信的多跳方法对于建立适用于不同应用的稳定网络是可行的。

著录项

  • 作者

    Li Xiao;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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