Jupiterweg 4, Münster, Germany.
Martin-Luther-University, Halle, Germany.
Pest Manag Sci. 2018 Jun;74(6):1251-1258. doi: 10.1002/ps.4843. Epub 2018 Mar 2.
Field experiments examining target-oriented variable-rate fungicide spraying were performed in 2015 and 2016. The spray volume was adapted in real time to the local green coverage level of winter wheat (Triticum aestivum L.), which was detected using a camera sensor.
Depending on the growth heterogeneity in the three strip trials in 2015, fungicide savings in the sensor-sprayed strip compared with the adjacent uniformly sprayed strip were 44%, 45% and 1%. In the 2016 field trial, the saving was 12%. There was no greater level of senescence or disease occurrence, and no higher yield losses in the camera-controlled variable-rate sprayed strips compared with the adjacent uniformly sprayed strips.
From an ecological and economical point of view, sensor-controlled variable-rate spraying technology, which uses the level of green crop coverage as the plant parameter to adapt the spray volume locally, can be an alternative to the common practice of uniform spraying. © 2017 Society of Chemical Industry.
2015 年和 2016 年进行了田间试验,以检验目标导向的变量施药技术。通过使用相机传感器实时检测冬小麦(Triticum aestivum L.)的局部绿色覆盖率,从而调整喷雾量。
根据 2015 年三个条播试验的生长异质性,与相邻均匀喷雾条带相比,传感器喷雾条带的杀菌剂节省量为 44%、45%和 1%。在 2016 年的田间试验中,节省了 12%。与相邻均匀喷雾条带相比,在相机控制的变量喷雾条带中,没有出现更高程度的衰老或疾病发生,也没有更高的产量损失。
从生态和经济的角度来看,使用绿色作物覆盖率作为植物参数来局部调整喷雾量的传感器控制变量喷雾技术可以替代常用的均匀喷雾方法。 © 2017 英国化学学会。