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Eye-Safe Lidar System for Pesticide Spray Drift Measurement

机译:人眼安全激光雷达系统用于农药喷雾漂移测量

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摘要

Spray drift is one of the main sources of pesticide contamination. For this reason, an accurate understanding of this phenomenon is necessary in order to limit its effects. Nowadays, spray drift is usually studied by using in situ collectors which only allow time-integrated sampling of specific points of the pesticide clouds. Previous research has demonstrated that the light detection and ranging (lidar) technique can be an alternative for spray drift monitoring. This technique enables remote measurement of pesticide clouds with high temporal and distance resolution. Despite these advantages, the fact that no lidar instrument suitable for such an application is presently available has appreciably limited its practical use. This work presents the first eye-safe lidar system specifically designed for the monitoring of pesticide clouds. Parameter design of this system is carried out via signal-to-noise ratio simulations. The instrument is based on a 3-mJ pulse-energy erbium-doped glass laser, an 80-mm diameter telescope, an APD optoelectronic receiver and optomechanically adjustable components. In first test measurements, the lidar system has been able to measure a topographic target located over 2 km away. The instrument has also been used in spray drift studies, demonstrating its capability to monitor the temporal and distance evolution of several pesticide clouds emitted by air-assisted sprayers at distances between 50 and 100 m.
机译:喷雾飘移是农药污染的主要来源之一。因此,为了限制其影响,必须对这种现象有准确的了解。如今,通常使用原位收集器研究喷雾漂移,原位收集器仅允许对农药云的特定点进行时间积分采样。先前的研究表明,光检测和测距(激光)技术可以替代喷雾漂移监测。该技术可实现高时间和距离分辨率的农药云的远程测量。尽管有这些优点,但目前尚无适合这种应用的激光雷达仪器的事实明显限制了其实际使用。这项工作提出了第一个专为监控农药云而设计的人眼安全激光雷达系统。该系统的参数设计是通过信噪比模拟进行的。该仪器基于3 mJ脉冲能量掺glass玻璃激光器,直径80毫米的望远镜,APD光电接收器和光机可调组件。在第一次测试测量中,激光雷达系统已经能够测量2公里以外的地形目标。该仪器还用于喷雾漂移研究,证明了它能够监测空气辅助喷雾器在50至100 m之间的距离散布的几种农药云的时间和距离演变。

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