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An RFID-based solution for monitoring sprayer movement in an orchard/vineyard

机译:基于RFID的用于监控果园/葡萄园的喷雾器运动的解决方案

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Pesticide application monitoring and long-term data recording in the field is typically the first step in fruit traceability. In a spray monitoring and guiding system, identification of the sprayer movement is a key part of technology. Although Global Navigation Satellite System (GNSS) is a widely used system to obtain location information, in an orchard/vineyard, especially one in which the trees/plants have tall and large canopies, the continuity and stability of the GNSS signal may decrease dramatically and lead to failure of guidance. A Radio Frequency Identification Devices (RFID) solution for identifying sprayer travel was proposed, and a spray monitoring and guiding system was designed based on this solution. In-lab system simulation test and field test results showed that the system could distinguish the travel direction of the sprayer, identify its location in the field, record flow rate information, calculate sprayed volume, and show all the above information on a computer screen in real-time when the RFID reader had successfully registered each RFID card. For the monitoring and guiding system with one antenna on each side, which required the cards and the antennas to be at the same height, the best relative position was found by placing the card parallel to the antenna. The results of tests in the field showed that an improved system with two antennas on each side, which only required the cards to be put in the band with a width of 0.26 m between the centers of the two antennas, worked better with the best antenna angle of 125 degrees when the speed of the sprayer was less than 1.8 m/s.
机译:农药应用监测和该领域的长期数据录制通常是果实可追溯性的第一步。在喷涂监测和引导系统中,喷雾器运动的识别是技术的关键部分。虽然全球导航卫星系统(GNSS)是一种广泛使用的系统,以获得地点信息,但在果园/葡萄园中,特别是树木/植物具有高大且檐篷,GNSS信号的连续性和稳定性可能会显着降低导致指导失败。提出了一种用于识别喷雾器行程的射频识别装置(RFID)解决方案,基于该溶液设计了喷雾监测和引导系统。在实验室系统仿真测试和现场测试结果表明,系统可以区分喷雾器的行进方向,识别其位置,记录流量信息,计算喷涂的体积,并在计算机屏幕上显示所有上述信息RFID阅读器已成功注册每个RFID卡的实时。对于每个侧的一个天线的监测和引导系统,这需要卡片和天线处于相同的高度,通过将卡平行于天线将卡片放置来找到最佳的相对位置。该领域的测试结果表明,每侧有两个天线的改进系统,只需要在两个天线的中心之间放置在宽度0.26米的频段中的卡片,并使用最佳天线更好地工作当喷雾器的速度小于1.8m / s时,125度的角度。

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