Localization of sensor networks considering energy accuracy tradeoffs

S. Pandey, P. Prasad, P. Sinha, P. Agrawal
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引用次数: 21

Abstract

Localization in sensor networks is a prerequisite for associating the sensed phenomenon to a particular location. Various aspects of sensor network localization have recently been studied. However, amongst the vast number of localization schemes proposed, tradeoff between the energy required for localization and resulting accuracy of localization is not addressed. In a highly resource-constrained environment such as a sensor network, it is important to address the above energy accuracy relationship during the localization process. Network lifetime is enhanced by applying energy-aware localization schemes periodically. In this paper, a localization algorithm is presented which transforms the network into a system of springs. Using optimization techniques the stable state of such a system is determined, which yields the locations of the nodes in the network. The energy accuracy tradeoff obtained from the algorithm is studied using MATLAB simulations. Results for a centralized and distributed implementation of the scheme are presented.
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考虑能量精度权衡的传感器网络定位
传感器网络中的定位是将感测现象与特定位置联系起来的先决条件。近年来,人们对传感器网络定位的各个方面进行了研究。然而,在提出的大量定位方案中,没有解决定位所需的能量和定位精度之间的权衡问题。在传感器网络等资源高度受限的环境中,在定位过程中处理上述能量精度关系非常重要。通过周期性地应用能量感知定位方案,可以提高网络的生存期。本文提出了一种将网络转化为弹簧系统的定位算法。利用优化技术确定这种系统的稳定状态,从而得到网络中节点的位置。通过MATLAB仿真研究了该算法的能量精度权衡。给出了该方案的集中和分布式实现结果。
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