College of Mechanical and Electronic Engineering, Nanjing Forestry University, Nanjing, China.
PLoS One. 2020 Jul 23;15(7):e0235700. doi: 10.1371/journal.pone.0235700. eCollection 2020.
The dosage sprayed upon per unit area is an important index to measure the effects of pesticide application. Owing to the fact that parameters such as flight height, flight speed, and spray swath can change at any given time, it is impossible to ensure a consistent amount of pesticide application per unit area during the course of aerial variable spray. In order to ensure a consistent amount of pesticide application per unit area, a set of control models of aerial variable spray using an unmanned aerial vehicle (UAV) was proposed, and the corresponding control system was developed based on the technology of aerial variable spray. According to the change of flight parameters, this system was able to adjust the opening degree of solenoid valve through the control model of aerial variable spray. After that, the amount per unit time would change to ensure a consistent amount of pesticide application per unit area, which effectively avoided the phenomenon of uneven pesticide application and improved the accuracy. According to the actual demand for the area in need of pesticide application, the operator can manually control the amount of pesticide applied and change the dosage sprayed upon per unit area to achieve a better effect. Through field tests, it was verified that the system has high accuracy of variable control. The deviation range was between 0.11% and 9.79%, which met the demands of agricultural aviation pesticide application. Furthermore, the system had strong stability for working continuously for more than 6 h at 30°C to meet the environmental requirements of pesticide application via UAV. All the data related to the pesticide application were stored in this system, which provided a reference for the further study of the precision technology in pesticide application. The model proposed in this paper also provided a theoretical basis for the technology development of aerial variable spray.
单位面积施药量是衡量施药效果的重要指标。由于飞行高度、飞行速度、喷幅等参数随时可能发生变化,因此在进行航空变量喷雾作业时,无法保证单位面积的施药量保持一致。为了保证单位面积的施药量一致,提出了一套基于无人机的航空变量喷雾控制模型,并基于航空变量喷雾技术开发了相应的控制系统。根据飞行参数的变化,该系统能够通过航空变量喷雾控制模型调整电磁阀的开度。之后,单位时间的施药量将会发生变化,从而确保单位面积的施药量保持一致,有效避免了施药不均匀的现象,提高了准确性。根据需要施药的区域的实际需求,操作人员可以手动控制施药量并改变单位面积的施药量,以达到更好的效果。通过田间试验验证,该系统具有较高的变量控制精度,其偏差范围在 0.11%至 9.79%之间,满足农业航空施药的要求。此外,该系统在 30°C 连续工作 6 小时以上时具有较强的稳定性,满足了无人机施药的环境要求。该系统还存储了与施药相关的所有数据,为进一步研究施药精准技术提供了参考。本文提出的模型还为航空变量喷雾技术的发展提供了理论依据。