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Flying sensors: Merging Nano-UAV with radiofrequency identification

机译:飞行传感器:将Nano-UAV与射频识别融合

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The concurrent evolutions of microano Unmanned Aerial Vehicles (UAVs) and sensor-oriented Radio frequency identification (RFID) technology, prompts the idea of winged-tags for an ubiquitous and dynamic monitoring of harsh environments and of large indoors spaces. It is here described and experimentally characterized the concept of Tag-Drone comprising a low-cost nano-quadcopter and a miniaturized RFID tag having temperature sensing capability. The weight of the RFID sensor is compatible with the modest payload of the quadcopter and it can be interrogated up to three meters. A simple experimental procedure, involving a reproducible guided flight of the Tag-Drone, is hence described to estimate the visibility time windows with respect to a base station for on-the-flight data exchange in case of different operational modes.
机译:微型/纳米无人飞行器(UAV)和面向传感器的射频识别(RFID)技术的同步发展催生了带翼标签的思想,该标签可用于对恶劣环境和大型室内空间进行无处不在的动态监控。这里描述并通过实验表征了标签无人机的概念,该标签无人机包括低成本的纳米四旋翼飞行器和具有温度感测能力的小型化RFID标签。 RFID传感器的重量与四旋翼飞行器的适度有效载荷兼容,可以被查询长达三米。因此,描述了一种简单的实验过程,该过程涉及可复制的Tag-Drone引导飞行,以估计相对于基站的可见性时间窗口,以便在不同操作模式下进行实时数据交换。

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