根据陆地激光雷达数据模拟电缆走廊

IF 2.6 2区 农林科学 Q1 FORESTRY
Carl O. Retzlaff, Christoph Gollob, Arne Nothdurft, Karl Stampfer, Andreas Holzinger
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引用次数: 0

摘要

本文介绍了在陡峭地形上开采木材时,利用森林数字孪生模型优化电缆走廊布局的新方法。生成电缆走廊布局的传统方法依赖于精度较低的等高线图,这可能会导致布局依赖于不可行的支撑物,从而削弱对所生成布局的信心。我们介绍了一种详细的模拟方法,该方法使用高分辨率树木地图和数字地形模型来计算给定地形中所有可能的电缆走廊的现实表示。我们采用林业领域的既定方法计算指定区域内可行的缆索走廊,包括绳索偏转、确定足够的树木锚点以及在必要时放置中间支撑。建议的单条电缆走廊轨迹为优化整体布局奠定了基础,从而降低了安装和运行成本,并促进了陡峭地形上的可持续木材开采实践。下一步,我们将根据多种标准(成本、人体工程学方面、生态方面),对可行的电缆走廊布局进行数学优化,并将结果整合到用户友好的工作流程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Simulating cable corridors based on terrestrial LiDAR data

Simulating cable corridors based on terrestrial LiDAR data

This article introduces a new basis for optimising cable corridor layouts in timber extraction on steep terrain by using a digital twin of a forest. Traditional approaches for generating cable corridor layouts rely on less accurate contour maps, which can lead to layouts which rely on infeasible supports, undermining confidence in the generated layouts. We present a detailed simulational approach which uses high-resolution tree maps and digital terrain models to compute realistic representations of all possible cable corridors in a given terrain. We applied established methods in forestry to compute feasible cable corridors in a designated area, including rope deflection, determining sufficient tree anchors and placing intermediate supports where necessary. The proposed individual cable corridor trajectories form the foundation for an optimised overall layout that enables a reduction of installation and operation costs and promotes sustainable timber extraction practices on steep terrain. As a next step we aim to mathematically optimise the layout of feasible cable corridors based on multiple criteria (cost, ergonomic aspects, ecological aspects), and integrate the results into an user-friendly workflow.

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来源期刊
CiteScore
5.10
自引率
3.60%
发文量
77
审稿时长
6-16 weeks
期刊介绍: The European Journal of Forest Research focuses on publishing innovative results of empirical or model-oriented studies which contribute to the development of broad principles underlying forest ecosystems, their functions and services. Papers which exclusively report methods, models, techniques or case studies are beyond the scope of the journal, while papers on studies at the molecular or cellular level will be considered where they address the relevance of their results to the understanding of ecosystem structure and function. Papers relating to forest operations and forest engineering will be considered if they are tailored within a forest ecosystem context.
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