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Channel aware iterative source localization for wireless sensor networks

机译:无线传感器网络的频道意识迭代源定位

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In this paper, we propose an energy efficient iterative source localization scheme in wireless sensor networks (WSNs). Instead of sending data from all the sensors to the fusion center, a coarse location estimate is first obtained from a set of anchor sensors. Then, a few non-anchor sensors are activated at a time to refine the location estimate in an iterative manner. We assume that the channels between sensors and the fusion center are subject to fading and noise. The fusion center is assumed to either have the complete or partial channel knowledge. Based on the received information at each iteration, the minimum mean squared error (MMSE) estimate of the source location is approximated using a Monte Carlo method. Then, in order to activate the non-anchor sensors for the next iteration, we develop a mutual information (MI)-based sensor selection scheme. Simulation results for the partial channel knowledge (PCK) and the complete channel knowledge (CCK) are presented to show the performance of the proposed approach.
机译:在本文中,我们提出了无线传感器网络(WSN)中的能量高效迭代源定位方案。不是将数据从所有传感器发送到融合中心,首先从一组锚传感器获得粗略位置估计。然后,一次激活一些非锚传感器,以迭代方式优化位置估计。我们假设传感器和融合中心之间的通道受衰落和噪音。假设融合中心具有完整或部分渠道知识。基于每个迭代的接收信息,使用蒙特卡罗方法近似源位置的最小均方误差(MMSE)估计。然后,为了激活下次迭代的非锚传感器,我们开发了基于相互信息(MI)的传感器选择方案。提出了部分通道知识(PCK)和完整信道知识(CCK)的仿真结果以显示所提出的方法的性能。

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