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Asymptotic fusion performance in a power constrained, distributed wireless sensor network.

机译:功率受限的分布式无线传感器网络中的渐近融合性能。

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摘要

The performance of decentralized detection in power constrained wireless sensor network is analyzed. We consider two distributed processing schemes; the analog relay amplifier local processing and the quantized decision local processing. In the first model, the system is assumed to be subjected to a total power constraint and the distributed nodes are assumed to perform analog relay amplifier local processing. Under these assumptions, we show that, we can monotonically improve the fusion performance by using non-orthogonal sensor-to-fusion center communication, as opposed to orthogonal communication. In order to quantify the performance, we employ circulant matrix theory to derive closed form asymptotic expressions. These asymptotic results allow us to observe the effect of each parameter on the total system performance. Numerical results show that these asymptotics provide a very good approximation to the exact performance, even for a small number of sensors.;In the second model, distributed nodes are assumed to make binary decisions, in an inhomogeneous sensor system, i.e. the channel statistics are not identical among the sensors. We derive the asymptotic fusion performance via the Lindberg-Feller central limit theorem. A power allocation scheme is also proposed based on the well-known water-filling algorithm. The proposed scheme shows better performance corresponds to the equal power assignment when the total power is sufficient with respect to the network size. However, as we increase the network size the water-filling gain diminishes.
机译:分析了功率受限无线传感器网络中分散检测的性能。我们考虑两种分布式处理方案;模拟中继放大器本地处理和量化判决本地处理。在第一个模型中,假定系统受到总功率约束,并且假定分布式节点执行模拟中继放大器本地处理。在这些假设下,我们表明,与正交通信相反,通过使用非正交的传感器到融合中心通信,我们可以单调提高融合性能。为了量化性能,我们采用循环矩阵理论来得出封闭形式的渐近表达式。这些渐近结果使我们能够观察到每个参数对整个系统性能的影响。数值结果表明,即使在传感器数量较少的情况下,这些渐近性也可以很好地逼近精确性能。在第二个模型中,假设分布式节点在不均匀的传感器系统中进行二元决策,即信道统计量为传感器之间不完全相同。我们通过Lindberg-Feller中心极限定理推导出渐近融合性能。还基于众所周知的注水算法提出了一种功率分配方案。当总功率相对于网络规模足够大时,所提出的方案显示出更好的性能对应于相等的功率分配。但是,随着我们增加网络规模,注水增益将减小。

著录项

  • 作者

    Al Tarazi, Kossai Abdalah.;

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2006
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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