首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Optimization of control parameters of droplet density in citrus trees using UAVs and the Taguchi methodOptimization of control parameters of droplet density in citrus trees using UAVs and the Taguchi method
【24h】

Optimization of control parameters of droplet density in citrus trees using UAVs and the Taguchi methodOptimization of control parameters of droplet density in citrus trees using UAVs and the Taguchi method

机译:利用UAV和Taguchi方法优化柑橘树中液滴密度的控制参数利用UAV和Taguchi方法优化柑橘树中液滴密度的控制参数

获取原文
           

摘要

The control parameters of the unmanned aerial vehicle (UAV) should be carefully designed to improve UAV spraying performance on citrus trees. The present study investigated the optimal droplet distribution control parameters in citrus trees using a UAV and the Taguchi method, of which optimal results were observed with an inverted triangle citrus tree canopy shape, a spraying height of 1.40 m, and a flight speed of 1.0 m/s. Among the discussed control parameters, the flight speed presented the most significant effect with a contribution percentage of 74.0%. The established multiple regression model predicted an optimal spraying height of 1.27 m and a maximum droplet density of 35.39 droplets/cm2. In addition, the effects of individual control parameter on the droplet density of the lower layer of citrus trees were systematically analyzed, of which inverted triangle shape more significantly affected the droplet density of the lower layer and presented an 82.0% increase in droplet density as compared to the triangle shape. An improvement of 59.6% in the lower layer droplet density was observed at a spraying height of 1.40 m. In addition, the other spraying heights did not present significant differences in their coefficient of variation (CV) values.
机译:应该仔细设计无人机的控制参数,以提高柑橘树上无人机的喷涂性能。本研究使用无人机和田口方法研究了柑桔树中最佳的液滴分布控制参数,在倒三角柑桔树冠形状,喷雾高度为1.40 m,飞行速度为1.0 m的情况下观察到了最佳结果。 / s。在讨论的控制参数中,飞行速度表现出最显着的影响,贡献率为74.0%。建立的多元回归模型预测最佳喷雾高度为1.27 m,最大液滴密度为35.39液滴/ cm2。此外,系统地分析了各个控制参数对柑桔树下层液滴密度的影响,其中倒三角形状对下层液滴密度的影响更大,与上一代相比,液滴密度增加了82.0%。到三角形。在1.40 m的喷涂高度下,下层液滴密度提高了59.6%。此外,其他喷涂高度的变异系数(CV)值也没有显着差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号