BalloonNet: A Deploying Method for a Three-Dimensional Wireless Network Surrounding a Building

Shin Matsuo, Weihua Sun, N. Shibata, T. Kitani, Minoru Ito
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引用次数: 5

Abstract

Aiming at fast establishment of a wireless network around a multi-level building in a disaster area, we propose an efficient method to determine the locations of network nodes in the air. Nodes are attached to balloons outside a building and deployed in the air so that the network can be accessed from anywhere in the building. In this paper, we introduce an original radio propagation model for predicting path loss from an outdoor position to a position inside a building. In order to address the three-dimensional deployment problem, the proposed method optimizes an objective function for satisfying two goals: (1) guarantee the coverage: the target space needs to be covered by over a certain percentage by wireless network nodes, (2) minimize the number of network nodes. For solving this problem, we propose an algorithm based on a genetic algorithm. To evaluate the proposed method, we compared our method with three benchmark methods, and the results show that the proposed method requires fewer nodes than other methods.
气球网:建筑物周围三维无线网络的部署方法
针对灾区多层建筑周围无线网络的快速建立,提出了一种确定网络节点空中位置的有效方法。节点被连接到建筑物外的气球上,并部署在空中,这样网络就可以从建筑物的任何地方接入。在本文中,我们引入了一个原始的无线电传播模型,用于预测从室外位置到建筑物内部位置的路径损耗。为了解决三维部署问题,本文提出的方法优化了一个目标函数,以满足两个目标:(1)保证覆盖:目标空间需要有一定比例以上的无线网络节点覆盖;(2)最小化网络节点数量。为了解决这一问题,我们提出了一种基于遗传算法的算法。为了对该方法进行评价,我们将该方法与三种基准方法进行了比较,结果表明,该方法比其他方法需要更少的节点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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