Centre for Automation and Robotics, CSIC-UPM, Arganda del Rey, Madrid 28500, Spain.
Institute of Agricultural Sciences, CSIC, Madrid 28006, Spain.
Sensors (Basel). 2017 Dec 24;18(1):30. doi: 10.3390/s18010030.
Crop monitoring is an essential practice within the field of precision agriculture since it is based on observing, measuring and properly responding to inter- and intra-field variability. In particular, "on ground crop inspection" potentially allows early detection of certain crop problems or precision treatment to be carried out simultaneously with pest detection. "On ground monitoring" is also of great interest for woody crops. This paper explores the development of a low-cost crop monitoring system that can automatically create accurate 3D models (clouds of coloured points) of woody crop rows. The system consists of a mobile platform that allows the easy acquisition of information in the field at an average speed of 3 km/h. The platform, among others, integrates an RGB-D sensor that provides RGB information as well as an array with the distances to the objects closest to the sensor. The RGB-D information plus the geographical positions of relevant points, such as the starting and the ending points of the row, allow the generation of a 3D reconstruction of a woody crop row in which all the points of the cloud have a geographical location as well as the RGB colour values. The proposed approach for the automatic 3D reconstruction is not limited by the size of the sampled space and includes a method for the removal of the drift that appears in the reconstruction of large crop rows.
作物监测是精准农业领域的一项基本实践,因为它基于对田间和场内变异性的观察、测量和适当响应。特别是,“地面作物检查”可以潜在地实现对某些作物问题的早期检测,或与害虫检测同时进行精准处理。“地面监测”对木本作物也非常有意义。本文探讨了开发一种低成本的作物监测系统的问题,该系统可以自动创建木本作物行的精确 3D 模型(彩色点云)。该系统由一个移动平台组成,允许以平均 3 公里/小时的速度在田间轻松获取信息。该平台除其他外,集成了一个 RGB-D 传感器,提供 RGB 信息以及一个与传感器最近的物体的距离的阵列。RGB-D 信息加上相关点(例如行的起始点和结束点)的地理位置,可以生成木本作物行的 3D 重建,其中云的所有点都具有地理位置以及 RGB 颜色值。用于自动 3D 重建的方法不受采样空间大小的限制,并且包括用于消除在大型作物行重建中出现的漂移的方法。