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Assessment of forage mass from grassland swards by height measurement using an ultrasonic sensor.

机译:使用超声波传感器通过高度测量来评估草地草料的草料质量。

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The non-destructive assessment of forage mass in legume-grass mixtures as a tool for yield mapping in precision farming applications has been investigated in two field experiments. An ultrasonic sensor was used to determine sward heights. Forage mass-height relationships were evaluated by carrying out static measurements on binary legume-grass mixtures of white clover (Trifolium repens L.), red clover (Trifolium pratense L.), and lucerne (Medicago sativa L.) with perennial rye grass (Lolium perenne L.) across a wide range of sward heights (5.0-104.2 cm) and forage mass (0.15-11.25 t ha-1). Mobile measurements, hereafter referred to as "on-the-go" were conducted by mounting the ultrasonic sensor in combination with a high-precision Differential Global Positioning System (DGPS) on a vehicle. Data were recorded along experimental plots consisting of perennial rye grass and grass-clover mixtures similar to the mixtures that were used for the static experiment. The static experiment revealed a relationship between ultrasonic sward height and forage mass explaining 74.8% of the variance with a standard error (SE) of 1.05 t ha-1 in a common dataset. The type of legume species, weed proportion, and growth period had a significant impact on the above mentioned relationship. Legume-specific regression functions had higher R2-values of up to 0.855 (white clover mixture). Datasets including legume-specific mixtures and pure swards of both components reached comparable R2 values between 0.799 and 0.818 but exhibited higher SE values. The abundance of weeds resulted in increased ultrasonic sward heights for the same levels of forage mass. On-the-go measurements across experimental field plots yielded a sward height range of 1.4-70.4 cm. Abrupt forage mass changes at the transition from treatment plots to cut interspaces resulted in a significant deviation from stubble height within a distance of 50 cm to plot borders. When legume-specific equations derived from static measurements were applied to sward heights, forage mass was overestimated by 21.4% on average. Mean residuals from predicted forage mass ranged between 0.893 (pure grass) and 1.672 (red clover mixture) and increased significantly if the point sampling distance along the track was increased to more than 0.82 m on average across all plots. The prediction accuracy of forage mass from ultrasonic height measurements is promising; however, further modifications to the technique are necessary. One such improvement can be the use of spectral reflectance signatures in combination with the ultrasonic sensor.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2011.09.005
机译:在两个田间试验中,研究了豆类草混合物中草料质量的无损评估,将其作为精确农业应用中产量图的一种工具。使用超声波传感器确定草皮高度。通过静态测量白三叶草( Trifolium repens L.),红三叶草( Trifolium pratense L.)的二元豆类-草混合物来评估草料的质量-高度关系。 ,以及具有多年生黑麦草( Lolium perenne L.)的卢塞恩(Medicago sativa L.)和广泛的草地高度(5.0-104.2 cm)和饲料质量( 0.15-11.25 t ha -1 )。通过将超声传感器与高精度差分全球定位系统(DGPS)组合安装在车辆上,进行移动测量(以下称为“随身携带”)。沿着由多年生黑麦草和草-三叶草混合物组成的实验图记录数据,类似于用于静态实验的混合物。静态实验揭示了超声草皮高度与草料质量之间的关系,解释了共同数据集中74.8%的方差,标准误差(SE)为1.05 t ha -1 。豆科植物的种类,杂草比例和生长期对上述关系产生了重大影响。豆科植物特定的回归函数具有较高的 R 2 值,最高可达0.855(白三叶草混合物)。包括豆类特定混合物和两种成分的纯皮草在内的数据集在0.799至0.818之间达到了可比的 R 2 值,但显示出较高的SE值。在相同水平的草料质量下,大量的杂草导致超声草皮高度的增加。在整个实验田间进行的移动测量得出的草皮高度范围为1.4-70.4 cm。从处理地块到切块间的过渡处突然发生草料质量变化,导致距地块边界50厘米以内的残茬高度明显偏离。当从静态测量得出的豆科植物特定方程应用于草丛高度时,平均饲草质量被高估了21.4%。预测草料质量的平均残差在0.893(纯草)和1.672(红三叶草混合物)之间,并且如果沿轨道的点采样距离在所有样地中平均增加到0.82 m以上,则显着增加。超声波高度测量对饲料质量的预测准确性是有希望的;但是,需要对该技术做进一步的修改。这样的改进之一可以是将光谱反射率签名与超声传感器结合使用。数字对象标识符http://dx.doi.org/10.1016/j.compag.2011.09.005

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