Experimental evaluation of interference impact on the energy consumption in Wireless Sensor Networks

V. Toldov, R. Igual-Perez, R. Vyas, A. Boé, L. Clavier, N. Mitton
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引用次数: 11

Abstract

In the era of Internet of Things (IoT), the development of Wireless Sensor Networks (WSN) arises different challenges. Two of the main issues are electromagnetic interference and the lifetime of WSN nodes. In this paper, we show and evaluate experimentally the relation between interference and energy consumption, which impacts the network lifetime. We present a platform based on commercially available low-cost hardware in order to evaluate the impact of electromagnetic interference in 2.4 GHz ISM band on energy consumption of WSN. The energy measurements are obtained separately from each electronic component in the node. Interference and energy measurements are conducted in an anechoic chamber and in an office-type lab environment. X-MAC protocol is chosen to manage the Radio Duty Cycle of the nodes and its energy performance is evaluated. The energy consumption transmitter nodes is analyzed particularly in this work. Moreover, this energy consumption has been quantified and differentiated according to the number of (re-)transmissions carried out by the transmitter as well as the number of ACK packets sent by the receiver for a single packet. Finally, we use a model of real battery to calculate the lifetime of the node for operation within different interference level zones. This study lays the basis for further design rules of communication protocols and development of WSNs.
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干扰对无线传感器网络能耗影响的实验评估
在物联网(IoT)时代,无线传感器网络(WSN)的发展面临不同的挑战。其中两个主要问题是电磁干扰和无线传感器网络节点的寿命。本文通过实验证明并评估了影响网络寿命的干扰与能量消耗之间的关系。为了评估2.4 GHz ISM频段电磁干扰对无线传感器网络能耗的影响,提出了一种基于商用低成本硬件的平台。能量测量分别从节点中的每个电子元件获得。干扰和能量测量是在消声室和办公室型实验室环境中进行的。选择X-MAC协议来管理节点的无线占空比,并对其能量性能进行了评估。本文重点分析了发射机节点的能耗。此外,这种能量消耗已经被量化,并根据发送器进行的(重)传输的数量以及接收器为单个数据包发送的ACK数据包的数量进行了区分。最后,我们利用实际电池模型计算了节点在不同干扰等级区域内的工作寿命。该研究为进一步设计无线传感器网络的通信协议规则和开发无线传感器网络奠定了基础。
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