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首页> 外文期刊>Applied Engineering in Agriculture >A Laser Scanner Based Measurement System for Quantification of Citrus Tree Geometric Characteristics
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A Laser Scanner Based Measurement System for Quantification of Citrus Tree Geometric Characteristics

机译:基于激光扫描仪的柑橘树几何特征量化测量系统

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摘要

The overall goal of this study was to develop a laser scanner based measurement system and associated algorithms to measure tree geometric characteristics such as tree canopy, height, width, surface area, and volume. A measurement system, which consisted of a laser scanner, an inertial sensor, a GPS, a serial-to-USB converter, a LabVIEW interface program, and a computer, was developed and mounted on a test vehicle. The laser scanner mounted on the test vehicle vertically scanned a target tree, which was trimmed to be symmetric with respect to a vertical line on the tree trunk, using two angular resolutions of 0.25 ° and 0.5 ° . The test vehicle moved along the tree-row direction at three average travel speeds of 0.63, 1.00, and 2.21 m/s. The tree geometric characteristics were estimated by three datasets: an original laser data set, a data set processed by the convex hull method, and a data set processed by the Savitzky-Golay filter. Under the experimental condition of a 0.63-m/s travel speed and a 0.25° angular resolution, the relative errors between the laser measurements and the manual measurements for tree canopy height, width, surface area, and volume were -0.37%, 0.01%, -1.99%, and 5.96%, respectively. Estimations of the tree geometric characteristics by the convex hull method were close to the manual measurements in general. Although the estimations by the original laser data set and the Savitzky-Golay filter data set deviated further from the manual measurements, the data sets could describe the profile of the tree in detail with a higher spatial resolution than that obtained by the convex hull method. It is expected that the data sets may provide more useful information in predicting tree growth and productivity. The distance error of 10 cm between the laser travel line and the tree row line caused errors of 4.0% and 9.2% in surface area and volume measurements, respectively. The laser scanner based measurement system developed in this study demonstrated that it can measure the tree geometric characteristics with a relatively good accuracy. However, measurement errors may increase for asymmetrically shaped trees
机译:这项研究的总体目标是开发一种基于激光扫描仪的测量系统和相关算法,以测量树木的几何特征,例如树木的树冠,高度,宽度,表面积和体积。开发了由激光扫描仪,惯性传感器,GPS,串行到USB转换器,LabVIEW接口程序和计算机组成的测量系统,并将其安装在测试车辆上。安装在测试车辆上的激光扫描仪使用0.25°和0.5°的两个角分辨率垂直扫描目标树,并修剪成相对于树干上的垂直线对称。测试车辆沿树行方向以0.63、1.00和2.21 m / s的三个平均行进速度移动。通过三个数据集来估计树木的几何特征:原始激光数据集,通过凸包方法处理的数据集和由Savitzky-Golay滤波器处理的数据集。在0.63 m / s的行进速度和0.25°的角分辨率的实验条件下,激光测量与手动测量之间的相对误差为-0.37%,0.01%,分别为-0.37%,0.01% ,-1.99%和5.96%。通常,用凸包法估算树木的几何特征与手工测量很接近。尽管原始激光数据集和Savitzky-Golay滤波器数据集的估计值与手动测量值进一步偏离,但这些数据集可以详细描述树的轮廓,其空间分辨率比通过凸包方法获得的分辨率更高。可以预期,这些数据集可以在预测树木生长和生产力方面提供更多有用的信息。激光行进线与树行线之间的10 cm距离误差分别导致表面积和体积测量的误差分别为4.0%和9.2%。在这项研究中开发的基于激光扫描仪的测量系统证明,它可以以相对较高的精度测量树木的几何特征。但是,对于不对称形状的树木,测量误差可能会增加

著录项

  • 来源
    《Applied Engineering in Agriculture》 |2009年第5期|p.777-788|共12页
  • 作者

    K. H. Lee; R. Ehsani;

  • 作者单位

    Kyeong-Hwan Lee, ASABE Member, Postdoctoral Fellow, and Reza Ehsani, ASABE Member Engineer, Assistant Professor;

    Agricultural and Biological Engineering Department, University of Florida, IFAS, Citrus Research and Education Center, Lake Alfred, Florida. Corresponding author: Reza Ehsani, Agricultural and Biological Engineering Department, University of Florida, IFAS, Citrus Research and Education Center, 700 Experiment Station Road, Lake Alfred, FL 33850;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser scanner; Tree height; Tree canopy width; Tree canopy surface area; Tree canopy volume; Citrus;

    机译:激光扫描仪树高;树冠宽度;树木冠层表面积;树冠体积;柑橘类;

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