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Laser rangefinder-based measuring of crop biomass under field conditions

机译:在田间条件下基于激光测距仪的农作物生物量测量

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Knowledge of site-specific crop parameters such as plant height, coverage and biomass density is important for optimising crop management and harvesting processes. Sensors for measuring crop parameters are essential pre-requisites to gather this information. In recent years, laser rangefinder sensors have been adopted in many industrial applications. In agricultural engineering, the potential of laser rangefinders for measuring crop parameters has been little exploited. This paper reports the design and the performance of a measuring system based on a triangulation and a time-of-flight laser rangefinder for estimating crop biomass density in representative crops under field conditions. It was shown that the mean height of reflection point is a suitable parameter for non-contact indirect measurement of crop biomass by laser rangefinder sensors. The main parameters for potential assessment were the coefficient of determination (R po ) and the standard error (RMSE) for the relation between crop biomass density and the mean height of the reflection point in crop stands from oilseed rape, winter rye, winter wheat and grassland during the vegetation period in 2006. For the triangulation sensor, R po was in the range from 0.87 to 0.98 and for the time-of-flight sensor in the range from 0.75 to 0.99 for both fresh matter and dry matter density. The triangulation sensor had a reduced suitability caused by masking effects of the reflected beam and because of limited measuring range. Based on the results of experiments and technical data, it was concluded that the time-of-flight principle has good potential for site-specific crop management.
机译:了解特定地点的作物参数(例如植物高度,覆盖率和生物量密度)对于优化作物管理和收获过程非常重要。测量作物参数的传感器是收集此信息的必要先决条件。近年来,激光测距仪传感器已在许多工业应用中采用。在农业工程中,很少使用激光测距仪测量农作物参数。本文报告了基于三角测量和飞行时间激光测距仪的测量系统的设计和性能,该系统用于估计田间条件下代表性作物的作物生物量密度。结果表明,反射点的平均高度是激光测距仪传感器非接触间接测量作物生物量的合适参数。潜在评估的主要参数是确定系数(R po)和标准误差(RMSE),该系数关系到油菜,黑麦,冬小麦和油菜的作物生物量密度与反射点平均高度之间的关系。三角测量传感器的Rpo值在0.87至0.98的范围内,飞行时间传感器的R值在0.75至0.99的范围内,包括新鲜物质和干物质密度。三角测量传感器的适用性降低,这是由于反射光束的掩蔽效应和有限的测量范围所致。根据实验结果和技术数据,可以得出结论,飞行时间原理对于特定地点的作物管理具有良好的潜力。

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