An experimental study of WSN transmission power optimisation using MICAz motes

Y. Yusof, A. M. Muzahidul Islam, S. Baharun
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引用次数: 6

Abstract

Adjusting nodes positioning to satisfy the needs of network connectivity and power conservation in wireless sensor networks (WSN) is not a trivial task. Too far node distance may result in unreachable transmission while too near node distance not necessarily guarantee nodes connection. By knowing an acceptable distance range to position nodes in the networks, it can greatly help researchers to better configure settings of WSN environment, while reducing precision of readings between real WSN testbed and the simulation counterpart. This paper demonstrates a real implementation of transmission power control to assist the decision-making on nodes positioning to be used in a sensor network communication. The implementation of the study is done using the MICAz motes with a nesC programming in TinyOS in an indoor environment. Our findings suggest that to assure network connectivity, motes must not be located more than 1.18 metres distance when they are placed on the floor building and not more than 2.37 metres distance when they are situated about one metre above the floor building. Our results also indicates that the maximum length the signals can travel using maximum power 0 dBm is merely about six metres long.
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利用MICAz粒子优化无线传感器网络传输功率的实验研究
在无线传感器网络(WSN)中,调整节点位置以满足网络连通性和节能的需要是一项艰巨的任务。节点距离过远可能导致传输不可达,而节点距离过近不一定保证节点连接。通过了解网络中节点位置的可接受距离范围,可以极大地帮助研究人员更好地配置WSN环境设置,同时降低真实WSN试验台与仿真试验台之间的读数精度。本文给出了一种用于传感器网络通信中辅助节点定位决策的传输功率控制的实际实现。本研究是在室内环境下使用MICAz motes和TinyOS的nesC编程完成的。我们的研究结果表明,为了确保网络的连通性,当它们放置在地板建筑物上时,它们的位置不能超过1.18米,当它们位于地板建筑物上方约一米时,它们的位置不能超过2.37米。我们的结果还表明,使用最大功率0 dBm时,信号可以传播的最大长度仅为6米左右。
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