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Empirical Approach to Network Sizing for Connectivity in Wireless Sensor Networks with Realistic Radio Propagation Models

机译:具有现实无线传播模型的无线传感器网络网络尺寸的经验方法

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Choosing the appropriate network size to guarantee connectivity in a WSN deployment is a challenging and important question. Classic techniques to answer this question are not up to the challenge because they rarely consider realistic radio models. This work proposes a methodology to evaluate the performance of network size estimation techniques in terms of connectivity efficiency under realistic radio scenarios. This study is carried out using Atarraya, a simulation tool for wireless sensor networks, considering three classical estimation techniques and a radio model based on the specifications of the ZigBee radio from off-the-shelf WaspMote nodes from Libelium. The results show that the hexagon-based optimal grid technique provides the most efficient estimate, offering a high connectivity level with the lowest estimated number of nodes for a given proximity radius parameter, followed by the circle packing and the triangle-based grid distribution. In addition, the results show that packet error rates of 10% could still produce highly connected topologies.
机译:选择适当的网络大小以保证WSN部署中的连接是一个具有挑战性和重要的问题。经典技术要回答这个问题并不是迎接挑战,因为他们很少考虑现实的无线电模型。这项工作提出了一种方法来评估在现实无线场景下的连接效率方面的网络大小估计技术的性能。本研究是使用ATARAYA,用于无线传感器网络的模拟工具进行,考虑到三种经典估计技术和无线电模型,基于ZigBee无线电从废物从底层中的ZigBee无线电的规格。结果表明,基于六边形的最优网格技术提供了最有效的估计,提供了高连接级别,具有给定接近半径参数的最低估计节点数量,其次是圆包和基于三角形的网格分布。此外,结果表明,10%的数据包误差率仍然可以产生高度连接的拓扑。

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