Optimal Deployment of Wireless Sensor Networks for Air Pollution Monitoring

Ahmed Boubrima, Frederic Matigot, Walid Bechkit, H. Rivano, A. Ruas
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引用次数: 30

Abstract

Recently, air pollution monitoring emerges as a main service of smart cities because of the increasing industrialization and the massive urbanization. Wireless sensor networks (WSN) are a suitable technology for this purpose thanks to their substantial benefits including low cost and autonomy. Minimizing the deployment cost is one of the major challenges in WSN design, therefore sensors positions have to be carefully determined. In this paper, we propose two integer linear programming formulations based on real pollutants dispersion modeling to deal with the minimum cost WSN deployment for air pollution monitoring. We illustrate the concept by applying our models on real world data, namely the Nottingham City street lights. We compare the two models in terms of execution time and show that the second flow based formulation is much better. We finally conduct extensive simulations to study the impact of some parameters and derive some guidelines for efficient WSN deployment for air pollution monitoring.
空气污染监测无线传感器网络的优化部署
近年来,随着工业化和大规模城市化的发展,空气污染监测成为智慧城市的一项主要服务。无线传感器网络(WSN)具有低成本和自主性等诸多优点,是实现这一目标的合适技术。最小化部署成本是WSN设计的主要挑战之一,因此必须仔细确定传感器的位置。在本文中,我们提出了两个基于真实污染物扩散模型的整数线性规划公式,以解决空气污染监测中WSN部署成本最小的问题。我们通过将我们的模型应用于真实世界的数据,即诺丁汉市的路灯,来说明这个概念。我们在执行时间方面比较了两种模型,并表明第二种基于流的公式要好得多。最后,我们进行了广泛的模拟,研究了一些参数的影响,并得出了有效部署WSN用于空气污染监测的指导方针。
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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