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Accuracy assessment and error analysis for diameter at breast height measurement of trees obtained using a novel backpack LiDAR system

机译:使用新型背包LiDAR系统获得的树木胸高测量直径的精度评估和误差分析

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摘要

Background: The LiBackpack is a recently developed backpack light detection and ranging(LiDAR) system that combines the flexibility of human walking with the nearby measurement in all directions to provide a novel and efficient approach to LiDAR remote sensing, especially useful for forest structure inventory. However, the measurement accuracy and error sources have not been systematically explored for this system.Method: In this study, we used the LiBackpack D-50 system to measure the diameter at breast height(DBH) for a Pinus sylvestris tree population in the Saihanba National Forest Park of China, and estimated the accuracy of LiBackpack measurements of DBH based on comparisons with manually measured DBH values in the field. We determined the optimal vertical slice thickness of the point cloud sample for achieving the most stable and accurate LiBackpack measurements of DBH for this tree species, and explored the effects of different factors on the measurement error.Result: 1) A vertical thickness of 30 cm for the point cloud sample slice provided the highest fitting accuracy(adjusted R2= 0.89, Root Mean Squared Error(RMSE) = 20.85 mm);2) the point cloud density had a significant negative, logarithmic relationship with measurement error of DBH and it explained 35.1% of the measurement error;3) the LiBackpack measurements of DBH were generally smaller than the manually measured values, and the corresponding measurement errors increased for larger trees;and 4) by considering the effect of the point cloud density correction, a transitional model can be fitted to approximate field measured DBH using LiBackpackscanned value with satisfactory accuracy(adjusted R2= 0.920;RMSE = 14.77 mm), and decrease the predicting error by 29.2%. Our study confirmed the reliability of the novel LiBackpack system in accurate forestry inventory, set up a useful transitional model between scanning data and the traditional manual-measured data specifically for P.sylvestris, and implied the applicable substitution of this new approach for more species, with necessary parameter calibration.
机译:背景:Libackpack是最近开发的背包光检测和测距(LIDAR)系统,将人类行走的灵活性与附近的测量相结合,以为Lidar遥感的新颖和有效的方法,特别适用于森林结构库存。然而,该系统尚未系统地探索了测量精度和错误源。在本研究中,我们使用Libackpack D-50系统测量Saihanba中的乳房高度(DBH)的直径,用于赛坦巴的松树Sylvestris树种群中国国家森林公园,基于对现场手动测量的DBH值的比较估计DBH LibackPack测量的准确性。我们确定了点云样本的最佳垂直切片厚度,以实现这种树种的最稳定和准确的LibackPack测量,并探讨了不同因素对测量误差的影响。结果:1)垂直厚度为30厘米对于点云样本切片提供了最高的拟合精度(调整的R2 = 0.89,根均匀误差(RMSE)= 20.85 mm); 2)点云密度与DBH的测量误差有显着的负数,对数关系,并解释35.1%的测量误差; 3)DBH的libackpack测量通常小于手动测量值,并且相应的测量误差对于较大的树木增加; 4)通过考虑点云密度校正的效果,过渡模型可以使用libackpacksed值以令人满意的精度(调整的r2 = 0.920; rmse = 14.77mm)使用libackpacksed值来拟合DBH的近似场景。降低预测ng误差29.2%。我们的研究确认了新颖libackpack系统在准确的林业库存中的可靠性,在扫描数据和专门针对p.cestvestris的传统手动测量数据之间设置有用的过渡模型,并暗示了这种新方法的适用替换了更多种类,具有必要的参数校准。

著录项

  • 来源
    《森林生态系统:英文版》 |2020年第003期|P.421-431|共11页
  • 作者单位

    School of Urban Planning and Design Peking University Shenzhen Graduate School Shenzhen 518055 China;

    School of Urban Planning and Design Peking University Shenzhen Graduate School Shenzhen 518055 China;

    MOE Laboratory for Earth Surface Processes Institute of Ecology College of Urban and Environmental Sciences Peking University Beijing 100871 China;

    State Key Laboratory of Vegetation and Environmental Change Institute of Botany Chinese Academy of Sciences Beijing 100093 China;

    School of Urban Planning and Design Peking University Shenzhen Graduate School Shenzhen 518055 China;

    MOE Laboratory for Earth Surface Processes Institute of Ecology College of Urban and Environmental Sciences Peking University Beijing 100871 China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 林业基础科学;
  • 关键词

    Adaptive cylinder fitting; Diameter at breast height; LiBackpack; Point cloud slice; Point density; Transitional model;

    机译:自适应圆柱拟合;直径在乳房高度;LiBackpack;点云切片;点密度;过渡模型;
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