有效采集传感器数据的运行覆盖面积计算

P. Jayaraman, A. Zaslavsky, J. Delsing
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引用次数: 1

摘要

近年来,无线传感器网络已成为一个重要的研究领域。随着无处不在和普及的计算时代的主导地位,这些网络为有价值的信息提供了丰富的基础设施。本文通过提出一种利用智能移动对象计算覆盖(采集)区域的算法,重点研究传感器网络中的有效数据采集。该算法动态计算一个覆盖移动目标当前位置周围节点的集合区域。它使用加权图技术来识别节点,通过丢弃剩余的移动对象来有效地收集数据。该算法利用Voronoi图和Delaunay三角形计算集合面积。我们通过在基于蓝牙的传感器网络上模拟算法来验证所提出的算法。我们还通过改变移动目标的上下文参数来评估算法计算覆盖面积的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coverage Area Computation on the Run for Efficient Sensor Data Collection
Wireless sensor networks have emerged as a key area of research in recent years. With the dominance of ubiquitous and pervasive era of computing, these networks present a rich infrastructure for valuable information. In this paper we focus on efficient data collection in sensor networks by proposing an algorithm to compute a coverage (collection) area using smart mobile objects. The algorithm proposed computes a collection area dynamically covering nodes around the mobile objects current location. It uses a weighed graph technique to identify nodes from which data can be collected efficiently by the mobile object discarding the rest. The proposed algorithm computes the collection area using Voronoi Diagrams and Delaunay triangle. We validate the proposed algorithm by simulating the algorithm over a Bluetooth based sensor network. We also evaluate the algorithms efficiency to compute the coverage area by changing the mobile objects context parameters.
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