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Gas source localization based on maximum likelihood with arbitrary deployment WSN

机译:基于任意部署WSN的最大可能性的气体源定位

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Timely detection and localization of the gas leak are heated issues in the area of wireless sensor networks (WSN). Different methods have been proposed for various applications. In this paper, a new scheme is presented to monitor and estimate the leak of gas source. In our proposed approach, the gas source is located by employing maximum likelihood (ML) while the gas concentration is collected by various wireless sensor nodes distributed in the field arbitrarily. Furthermore, two different distributions of the sensors nodes, number of sensor nodes and two back-ground noise types are also taken into consideration to achieve better performance in localization. The performance of the proposed method is studied through numerical simulations. The experimental results show that when the number of sensor nodes is rather small, the uniform distribution performs better than the random distribution, but this effect is less and less distinct with the increase of sensor nodes. Finally, the impact of the different noise types to estimation error is analyzed and how to choose a suitable deployed method is discussed based on the number of sensor nodes according to the simulation results.
机译:天然气泄漏的及时检测和定位是无线传感器网络(WSN)区域的热量问题。已经提出了各种应用的不同方法。本文提出了一种新方案,以监测和估计气体源的泄漏。在我们所提出的方法中,通过采用最大似然(M1),在通过任意地分布在该字段中的各种无线传感器节点收集气体浓度来定位气体源。此外,还考虑了传感器节点的两个不同分布,传感器节点的数量和两个背面噪声类型,以实现在本地化中的更好性能。通过数值模拟研究了所提出的方法的性能。实验结果表明,当传感器节点的数量相当小时,均匀分布比随机分布更好,但随着传感器节点的增加,这种效果越来越差异。最后,分析了不同噪声类型对估计误差的影响,并且如何根据模拟结果基于传感器节点的数量讨论如何选择合适的部署方法。

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