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Monitoring downed coarse woody debris through appearance of canopy gaps in urban boreal forests with bitemporal ALS data

机译:使用位时ALS数据通过城市北方森林的林冠间隙的出现来监测被砍伐的粗木屑

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The study introduces a method for detailed mapping of downed coarse woody debris (CWD). Bitemporal airborne laser scanning (ALS) data and existing allometric equations were utilized to map the attributes and location of downed CWD. No training or calibration data were used in the process. The CWD locations were determined through canopy gaps detected with canopy height models (CHM) from 2009 and 2012. The attributes of formed CWD were derived through an individual tree detection (ITD) technique. Within the three year interval, 97.8% of all new downed trees were detected and their species group (conifer/deciduous) was classified correctly in 89.0% of the cases (Kappa 0.76). Tree-level CWD diameter and volume were predicted with an RMSE of 8.7 cm and 0.5 m(3) respectively. The introduced method allows detailed mapping of CWD and can be utilized in forest planning and operational tasks in urban forest areas. (C) 2015 Elsevier GmbH. All rights reserved.
机译:该研究介绍了一种详细绘制倒下的粗木屑(CWD)的方法。利用双时空机载激光扫描(ALS)数据和现有的测速方程来绘制下降的CWD的属性和位置。该过程中未使用任何训练或校准数据。通过使用2009年和2012年的树冠高度模型(CHM)检测到的树冠间隙来确定CWD的位置。形成的CWD的属性是通过单个树检测(ITD)技术得出的。在三年的时间间隔内,检测到所有新砍伐树木的97.8%,并将其物种组(针叶树/落叶树)正确分类为89.0%(Kappa 0.76)。预测树级CWD直径和体积的RMSE分别为8.7 cm和0.5 m(3)。引入的方法可以对CWD进行详细的绘制,并且可以用于城市森林地区的森林规划和操作任务。 (C)2015 Elsevier GmbH。版权所有。

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