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Modeling of ZigBee (IEEE 802.15.4) channel in rail environment for Intelligent Transport

机译:ZigBee(IEEE 802.15.4)智能运输轨道环境频道的建模

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To deploy Wireless Sensor Networks (WSNs) in the railway transport, knowledge of signal propagation in this environment is required for the safety and the reliability of whole system. This calls to two domains of research. Firstly, the study of the propagation characteristics is necessary to predict the propagation law that rules attenuation of the signal in the train environment along with the multipath characteristics. Secondly, the effects of external disturbance and interferences onto wireless signal must also be investigated. In this paper, we present first-ever measurements (to our knowledge) of propagation channel along railway track for WSNs. Extensive real hardware measurements of RSSI: Received Signal Strength Indication are presented and compared to the theoretical models, to investigate the IEEE 802.15.4 ZigBee propagation channel characteristics. Results of extensive measurement campaigns that validate Log-normal and shadowing path-loss model with accurate loss parameters at 2.4 GHz in outdoor environments are presented. A comparison of this model and extensive real hardware measurement in two selected scenarios is discussed.
机译:要在铁路运输中部署无线传感器网络(WSN),请在整个系统的安全性和可靠性所需的信号传播知识。这呼吁两个研究领域。首先,需要研究传播特征,以预测传播法,该传播规则与多路径特征一起规则衰减信号。其次,还必须研究外部干扰和干扰对无线信号的影响。在本文中,我们向WSN的铁路轨道提出了沿铁路轨道的首次测量(对我们的知识)。 RSSI的广泛实际硬件测量:接收信号强度指示呈现并与理论模型进行比较,以研究IEEE 802.15.4 ZigBee传播信道特性。提供了广泛测量活动的结果,验证了在室外环境中为2.4 GHz的准确损耗参数验证了逻辑正常和阴影路径损耗模型。讨论了在两个选定场景中的这种模型和广泛的实际硬件测量的比较。

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