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Improvement of the Communication between RFID Sensor Network Devices Used to Control and Monitor a Building

机译:改进用于控制和监控建筑物的RFID传感器网络设备之间的通信

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In the RFID sensor network (RSN), the devices communicate with each other by RF waves using the antennas through a propagation channel. A poor communication between these devices results in either a significant economic loss or security threats. The communication problems can have several origins depending on the type of antenna used and the nature of the propagation channel. In this work, our objective is to limit the communication problems between the nodes of this network that are linked to the characteristics of an indoor propagation channel. The goal is to predict the channel characteristics using the 3D ray tracing method in order to select the appropriate transmission parameters such as transmission power and duration of a symbol. To achieve this, we have modeled a building that is sectioned as a propagation channel where network devices are deployed for control and monitoring. The communication was made at 915?MHz using the quasi-isotropic 3D cubic antenna that we designed as well as a conventional dipole antenna in order to compare the results. We have found that the use of the 3D cubic antenna gives several advantages to the RFID sensor network compared to the most commonly used conventional dipole antenna, such as a transmission power of 0?dBm which automatically leads to an increase in the lifetime of the devices, as well as a minimum symbol duration of around 219.78?ns which gives a high bit rate.
机译:在RFID传感器网络(RSN)中,通过传播信道使用天线通过RF波彼此通信。这些设备之间的通信不佳导致显着的经济损失或安全威胁。根据所使用的天线类型和传播信道的性质,通信问题可以具有多个起源。在这项工作中,我们的目标是限制与室内传播信道的特征相关联的该网络的节点之间的通信问题。目标是使用3D射线跟踪方法预测信道特性,以便选择适当的传输参数,例如传输功率和符号的持续时间。为实现这一目标,我们建模了一个构建,该建筑物被切断为传播信道,其中部署用于控制和监控网络设备。使用我们设计的准各向同性3D立方天线以及传统的偶极天线来进行915℃,以便进行比较以比较结果。我们发现,与最常用的传统偶极天线相比,3D立方天线的使用为RFID传感器网络提供了几个优点,例如0≤DBM的传输功率,其自动导致设备的寿命增加以及最小符号持续时间为约219.78Ω,其提供高比特率。

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