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Evaluation of Two Ground-Based Active Crop Canopy Sensors in Maize: Growth Stage, Row Spacing, and Sensor Movement Speed

机译:玉米中两个基于地面的主动作物冠层传感器的评估:生长期,行距和传感器移动速度

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Precision agriculture research has been directed toward enhancing the efficiency of N inputs by quantifying in-field variability. Remotely sensed indices such as normalized difference vegetation index (NDVI) can determine in-field N variability in maize (Zea mays L.). One method of determining NDVI is through the use of ground-based active crop canopy sensors. Several crop canopy sensors determine NDVI, however, climatic and management variables may affect NDVI readings. Our objectives were to compare two ground-based active crop canopy sensors (Crop Circle amber and GreenSeeker red) across plant growth stage, wind, crop row spacing, sensor movement speed, and N fertilizer rate under greenhouse conditions. Results show that wind had no effect on the NDVI readings of either sensor. Nitrogen rate and growth stage did affect the NDVI of both sensors with NDVI values generally increasing with increased N rate and advancing growth stage. For both sensors the V8 NDVI r(2) with N rate were lower than those observed at V10 and V12. However, the GreenSeeker (red sensor) had much lower r(2) values at V8 than the Crop Circle (amber sensor). Sensor speed had an effect on red sensor NDVI values while the amber sensor was not affected by sensor movement speed. The amber and red sensors distinguish plant N status and growth stage differences in maize in a greenhouse environment. However, the red sensor had more variability in NDVI readings and was affected by movement speed. The amber sensor shows no such limitations and therefore performed best under greenhouse conditions.
机译:精准农业研究一直致力于通过量化田间变化来提高氮素输入的效率。诸如标准化差异植被指数(NDVI)之类的遥感指数可以确定玉米(Zea mays L.)的田间N变异性。确定NDVI的一种方法是使用地面有源作物冠层传感器。几种作物冠层传感器确定NDVI,但是气候和管理变量可能会影响NDVI读数。我们的目标是比较温室条件下植物生长阶段,风,作物行距,传感器移动速度和氮肥施用量的两个地面活动作物冠层传感器(作物圆环琥珀色和绿色Seeker红色)。结果表明,风对任一传感器的NDVI读数均没有影响。氮速率和生长期确实影响了两个传感器的NDVI,NDVI值通常随着氮含量的增加和生长期的增加而增加。对于两个传感器,N速率的V8 NDVI r(2)均低于在V10和V12处观察到的N8。但是,GreenSeeker(红色传感器)在V8处的r(2)值比Crop Circle(琥珀色传感器)低得多。传感器速度对红色传感器的NDVI值有影响,而琥珀色传感器不受传感器运动速度的影响。琥珀色和红色传感器可区分温室环境中玉米中的植物N状况和生长阶段差异。但是,红色传感器的NDVI读数变化较大,并且受移动速度的影响。琥珀色传感器没有这种限制,因此在温室条件下表现最佳。

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