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IEEE 802.11a/b/g short-scale indoor wireless sensor placement

机译:IEEE 802.11a / b / g / n小型室内无线传感器放置

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Wireless signals present particular behaviour in indoor environments. Walls, roofs and floors generate reflections and refractions that conduce to constructive and destructive interferences due to the multipath effect. In this paper, we perform an analytical study based on the signal strength generated by an access point (AP) inside a building. The evolution of the signal strength allows us to move away the sensors from the AP without reducing the signal level and link quality. We study the IEEE 802.11 technology. These results are compared with the theoretical distribution channels to know what should be followed to avoid interferences. Finally, taking as a reference the measures provided, we develop a method for estimating indoor signal strength that will help us determine the best position for wireless sensors. Our method will allow saving 15% of sensors. The reduction in the number of sensors provides us economic and energy savings, allowing us to prolong the network lifetime.
机译:无线信号在室内环境中表现出特殊的行为。墙壁,屋顶和地板会产生反射和折射,这些反射和折射会由于多径效应而导致相长和相消干涉。在本文中,我们根据建筑物内的接入点(AP)产生的信号强度进行分析研究。信号强度的演变使我们能够将传感器从AP移开,而不会降低信号电平和链路质量。我们研究IEEE 802.11技术。将这些结果与理论分布通道进行比较,以了解应遵循哪些措施以避免干扰。最后,以提供的措施为参考,我们开发了一种估计室内信号强度的方法,该方法将帮助我们确定无线传感器的最佳位置。我们的方法将节省15%的传感器。传感器数量的减少为我们节省了经济和能源,从而延长了网络寿命。

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