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Assessing an infrared-based seed drill monitoring system under field operating conditions

机译:根据现场操作条件评估基于红外的种子钻探监测系统

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In this study based on the infrared seed sensor developed earlier, a seed drill monitoring system was designed and constructed. In the proposed monitoring system, seed flow sensors were installed individually on each seed tube so that the seed flow rate, as well as the presence or absence of seed flow, could be displayed on a graphical interface. The ground speed was measured with the Hall Effect sensor, and taking into account the mass flow rate of the seed, the sowing rate was calculated according to the seed mass sown per unit area. During operation, the system registered sowing data with the location information provided by the GPS module. The overall information from the sowing performance was then recorded on the embedded memory card and simultaneously displayed on the graphical interface. The proposed system was also provided with ultrasonic sensors to continuously measure and display the seed and fertilizer levels in the hoppers. The monitoring system was constructed and installed on a seed drill equipped with 13 sowing units. With three levels of ground speed and sowing rate during field experiments, the sensing system was assessed under outdoor operating conditions. The field test resulted in a correlation coefficient of 85% between the mean of the weighted data obtained from the scale and the mass flow estimates. The obstruction of the optical elements by dust seems to have had the most adverse effect on the performance of the proposed sensing system.
机译:在本研究的基础上,基于早期开发的红外种子传感器,设计和构造了种子钻探监控系统。在所提出的监测系统中,种子流动传感器在每个种子管上单独安装,使得种子流速以及种子流的存在或不存在,可以在图形界面上显示。用霍尔效应传感器测量地速度,并考虑了种子的质量流量,根据每单位面积的种子播种计算播种速率。在操作期间,系统使用GPS模块提供的位置信息注册播种数据。然后将播种性能的整体信息记录在嵌入式存储卡上,并同时显示在图形界面上。该提出的系统还提供超声波传感器,以连续测量并显示料斗中的种子和肥料水平。监控系统是建造并安装在配备有13个播种单元的种子钻头上。在现场实验期间,在现场实验期间,在户外操作条件下评估传感系统的三个层次和播种率。场测试导致从刻度获得的加权数据的平均值和质量流量估计之间的相关系数为85%。通过灰尘阻塞光学元件似乎对所提出的传感系统的性能具有最不利影响。

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