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Analyzing lifetime of energy harvesting wireless multimedia sensor nodes in industrial environments

机译:分析工业环境中能量收集无线多媒体传感器节点的寿命

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Recently, there has been a great demand for multimedia communication using Wireless Multimedia Sensor Networks (WMSNs) in industrial environments thanks to their low cost, flexibility, and rapid deployment. However, WMSNs face a major challenge of limited lifetime due to their limited battery capacity. Compared to regular data transmission, multimedia data transmission causes higher energy consumption because of larger data sizes leading to faster depletion of sensor node's batteries. The objective of this paper is to analytically quantify the impact of different energy harvesting methods based on vibration, indoor solar, and temperature difference as well as Fast-Zonal DCT and BinDCT based image compression methods on the lifetime of Telos and Mica2 sensor nodes deployed in indoor industrial environment. Performance results show that energy harvesting and image compression techniques improve lifetime of Mica2 and Telos motes by 51.8% and 25.8%, respectively when used with proper power management methods.
机译:近来,由于其低成本,灵活性和快速部署,在工业环境中对使用无线多媒体传感器网络(WMSN)的多媒体通信有巨大的需求。但是,由于电池容量有限,WMSN面临寿命有限的重大挑战。与常规数据传输相比,多媒体数据传输由于较大的数据大小而导致较高的能耗,从而导致传感器节点的电池更快耗尽。本文的目的是分析量化基于振动,室内太阳能和温度差的不同能量收集方法以及基于Fast-Zonal DCT和BinDCT的图像压缩方法对部署在Telos和Mica2传感器节点上的寿命的影响。室内工业环境。性能结果表明,采用适当的电源管理方法时,能量收集和图像压缩技术可使Mica2和Telos微粒的寿命分别提高51.8%和25.8%。

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