Study on Correlation among the Pollutant Gases and Strategy to Increase the Battery Lifetime of Sensor Network Based Monitoring System

Koel Datta Purkayastha, Shashank Sekhar Patra, S. Pradhan
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Abstract

In the research community, there is a growing interest in measuring, monitoring and analyzing the pollutant gases and also reducing the level of air pollution in rural and urban areas. The reasons of air pollution demands the modeling of correlation among various polluted concentrations. The work in this paper presents the correlation analysis between CO and temperature, CO and humidity, toluene and temperature, toluene and humidity, temperature and humidity. The correlation is evaluated by Spearman’s Rank-Order Correlation method. The results show that toluene and humidity have strong positive correlation (0.53047), weak positive correlation between toluene and temperature (0. 19524), no correlation between CO and temperature, weak negative correlation between CO and humidity (-0.20184) and again weak negative correlation between temperature and humidity (-0.29126). Moreover, the work of this paper aims to develop battery aware monitoring system to detect CO, NO2, CO2, temperature and humidity concentration that transfers information via wireless medium. Experimental result shows that by proper setting of ON time to Sleep time, the battery life is increased without disturbing the monitoring activities.
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基于传感器网络的监测系统中污染气体的相关性及提高电池寿命的策略研究
在研究界,人们对测量、监测和分析污染气体以及减少农村和城市地区的空气污染水平越来越感兴趣。空气污染的原因要求建立各种污染浓度之间的相关性模型。本文提出了CO与温度、CO与湿度、甲苯与温度、甲苯与湿度、温度与湿度的相关分析。采用Spearman秩序相关法对相关性进行评价。结果表明:甲苯与湿度呈强正相关(0.53047),甲苯与温度呈弱正相关(0。19524), CO与温度不相关,CO与湿度呈弱负相关(-0.20184),温度与湿度再次呈弱负相关(-0.29126)。此外,本文的工作旨在开发电池感知监测系统,检测CO, NO2, CO2,温度和湿度浓度,并通过无线介质传输信息。实验结果表明,通过将开机时间设置为休眠时间,可以在不影响监控活动的情况下延长电池寿命。
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