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首页> 外文期刊>Sensors and materials >Feasibility Study of the Unmanned-aerial-vehicle Radio-frequency Identification System for Localizing Construction Materials on Large-scale Open Sites
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Feasibility Study of the Unmanned-aerial-vehicle Radio-frequency Identification System for Localizing Construction Materials on Large-scale Open Sites

机译:无人机射频频率识别系统对大型开放位点定位建筑材料的可行性研究

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摘要

The locations of construction resources, such as workers, equipment, and materials, are one of the important data types for monitoring the states of ongoing activities. The needs for location data have driven various research efforts on sensing technologies for tracking these resources. Although a GPS has been employed mostly for construction equipment, radio frequency identification (RFID) technology has been used for construction materials including precast elements. The RFID system generally requires an on-site manager to walk around the site holding a reader to communicate with the tags attached to materials at close ranges. These manual procedures are time-consuming and inefficient when the materials are spread over a large-scale broad area. Also, the materials located beyond a manager's reach are undetectable. Therefore, in this study, an unmanned aerial vehicle (UAV)-based system that carries an RFID reader in the air for locating RFID tags attached to materials on the ground is proposed. The proposed UAV-RFID system receives signals from the tags located within the sensing range of the reader and saves their strength indicator values. The candidate area of the tag locations is estimated from the specifications of the reader and the flight altitude. Experimental tests signify that the system has a great potential to replace the manual reading process and improve the material management efficiency.
机译:建筑资源的位置,例如工人,设备和材料,是监测持续活动状态的重要数据类型之一。位置数据的需求已经驱动了对传感技术的各种研究,以跟踪这些资源。尽管GPS主要用于建筑设备,但射频识别(RFID)技术已用于包括预制元件的建筑材料。 RFID系统通常需要一个现场管理器在持有读取器的站点周围行走,以与靠近范围的标签通信。当材料在大型宽面积上铺展时,这些手动程序是耗时和效率低下。此外,位于经理范围之外的材料是不可检测的。因此,在本研究中,提出了一种在空气中携带RFID读取器的无人驾驶飞行器(UAV),用于定位连接到地面上的材料的RFID标签。所提出的UAV-RFID系统从位于读取器的感测范围内的标签接收信号,并节省其强度指示符值。标签位置的候选区域估计从读取器和飞行高度的规格估计。实验测试表示系统具有较大的潜力,可以更换手动读取过程,提高材料管理效率。

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