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Slot antenna packaging for infrastructure monitoring based on wake-up transceiver strategy

机译:基于唤醒收发器策略的基础设施监控的插槽天线包装

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The use of the package as a radiating element is the optimal solution in term of robustness for wireless sensor network (WSN) applications such as infrastructure monitoring. A robust, 83 % efficient and 6.5 dBi gain slot antenna packaging (simulation values in air) for wireless sensor nodes working at 868 MHz is presented in this paper. A low power wake-up radio transceiver strategy allowing a current consumption of 3.8 μA is associated to the radiating package. The theoretical battery life time for a 3 V input voltage and a 220 mA/h battery capacity is more than 6 years using the proposed system. Therefore the combination between the antenna packaging and wake-up approach increases the wireless system life time. Finite Element Method (FEM) simulation and experimental results are presented to show the effects of different concrete supports on the antenna performances. Moreover, indoor and outdoor wake-up rate measurements show the coverage efficiency of the complete device. Using a transmission power of +10 dBm and a wake-up sensitivity of -51.8 dBm, a distance of 55 meters is reached in comparison to more than 250 meters for data transmission.
机译:包装作为辐射元件的使用是在诸如基础设施监视的无线传感器网络(WSN)应用的鲁棒性期间的最佳解决方案。本文介绍了在868 MHz工作的无线传感器节点的强大,83%的高效和6.5 dBi增益插槽天线封装(空气中的仿真值)。允许电流消耗为3.8μA的低功率唤醒无线电收发器策略与辐射封装相关联。 3 V输入电压的理论电池寿命时间和220 mA / H电池容量的使用量超过3年,使用所提出的系统超过6年。因此,天线包装和唤醒方法之间的组合增加了无线系统的寿命。提出了有限元方法(FEM)模拟和实验结果,以显示不同混凝土支撑对天线性能的影响。此外,室内和室外唤醒速率测量显示了完整装置的覆盖效率。使用+10 dBm的传输功率和-51.8 dbm的唤醒灵敏度,与250米以上的数据传输相比,达到55米的距离。

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