基于圆形和双曲凸集投影的鲁棒传感器网络定位

Mats Rydström, E. Ström, A. Svensson
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引用次数: 43

摘要

我们考虑了定位信号源节点的问题,使用由一组传感器节点捕获的节点发出的特征信号。在文献中,这种估计问题通常被表述为加权最小二乘问题。然而,接收信号强度和异步到达时间测量会产生具有多个局部极小值和鞍点的目标函数,使优化过程复杂化。近年来,当接收到的信号强度测量值可用时,提出了凸集投影法(POCS)作为估计信号源位置的一种方法。POCS已被证明对目标函数的局部极小值具有鲁棒性,复杂度低,并且可以分布在网络中的传感器节点上。当使用以圆为界的凸集时,POCS的缺点是在定位传感器节点外周外的源节点时性能较差。我们提出了对所提出的POCS算法的扩展,称为双曲POCS,它增加了圆形POCS的性能,允许在传感器节点的外周外定位源节点,并且也适用于异步到达时间测量的情况
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Sensor Network Positioning Based on Projections onto Circular and Hyperbolic Convex Sets (POCS)
We consider the problem of locating a signal-source node, using characteristic signals emitted by the node that are captured by a set of sensor nodes. This estimation problem has often been formulated as a weighted least-squares problem in the literature. Received signal strength and asynchronous time-of-arrival measurements, however, give rise to objective functions with multiple local minima and saddle-points, complicating the optimization process. Recently, the method of projection onto convex sets (POCS) was suggested as a means to estimate source position, when received signal strength measurements are available. POCS has been shown to be robust to local minima in the objective function, is of low complexity, and is possible to distribute over the sensor nodes in the network. The drawback of POCS, when convex sets bounded by circles are used, is its poor performance in locating source nodes outside the outer perimeter of sensor nodes. We propose an extension to the presented POCS algorithm, called hyperbolic POCS, that increases the performance of circular POCS, allows for positioning of source nodes outside the outer perimeter of sensor nodes, and is applicable also for the case of asynchronous time-of-arrival measurements
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