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Multiaccess interference in a non-line-of-sight ultraviolet optical wireless sensor network

机译:非视距紫外线光学无线传感器网络中的多址干扰

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摘要

The concept of exploiting both the scattering properties and the absence of solar radiation in the "solarblind ultraviolet" spectral range for achieving a non-line-of-sight (NLOS) communication link for wireless sensor networks has been discussed in scientific literature. We address the issue of the multiaccess interference (MAI) that would be encountered in a simple and low-cost sensor network operating on the above NLOS principle, for different sensor node densities and traffic levels, and use a Poisson model for the sensor node distribution. A metric for evaluation and comparison of sensor node distribution scenarios is derived and used to discuss the performance limitations of NLOS wireless sensor networks operating in the solar blind ultraviolet spectrum. Guidelines for NLOS wireless sensor network design are outlined taking into consideration the cumulative effect of interference from distant sensor nodes, the expected number of hops, and the trade-off between node redundancy and node isolation. The significant contribution of network traffic control to system operability is demonstrated.
机译:在科学文献中已经讨论了利用散射特性和在“太阳盲紫外线”光谱范围内不存在太阳辐射来实现无线传感器网络的非视线(NLOS)通信链路的概念。我们针对不同的传感器节点密度和流量水平,解决了在上述NLOS原理下运行的简单且低成本的传感器网络中会遇到的多址干扰(MAI)问题,并将Poisson模型用于传感器节点分布。得出了用于评估和比较传感器节点分布方案的度量,并用于讨论在太阳盲紫外光谱中运行的NLOS无线传感器网络的性能局限性。概述了NLOS无线传感器网络设计指南,其中考虑了来自远距离传感器节点的干扰的累积影响,预期的跳数以及节点冗余和节点隔离之间的权衡。展示了网络流量控制对系统可操作性的重大贡献。

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  • 来源
    《Applied optics》 |2007年第23期|共7页
  • 作者

    Debbie Kedar;

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  • 正文语种 eng
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