基于WebGL虚拟地球的山区森林生产高效规划

F. Prandi, Giulio Panizzoni, Daniele Magliocchetti, Federico De Vigili, R. Amicis
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引用次数: 6

摘要

本文介绍了一种基于网络的三维视觉仿真系统,该系统支持基于空间信息的森林场景逼真建模和实时渲染。森林景观的三维可视化将用于了解林分生态演替、景观转变,通过假设分析工具帮助区域规划、改进决策过程和森林管理。本项目的目标是部署一个网络系统,能够方便地提供对林业信息的访问,这些信息通常由地理信息系统或专用系统管理,确保非地理空间专家如森林所有者和实地操作员获得这些信息。HTML5、WebGL、CSS 3D和Canvas元素等技术被认为是最适合在虚拟地球环境中对森林模型进行交互式可视化的技术,使用高度定制版的CesiumJS虚拟地球,称为GeoBrowser3D。由WebGL和最先进的软件技术提供支持,它提供了一个三维开放地理空间联盟(OGC)兼容的解决方案,集成了用于决策环境的计算和可视化技术。该解决方案允许大规模GIS数据可视化,如地图和森林模型,以及根据库存数据库和预先设计的模板模型自动生成的高细节小尺度信息,如点云或茎结构。此外,森林活动规划者可以访问更大规模的数据集,如道路和地籍地图以及单一木材信息。该系统已在漫游仿真和森林可视化应用中进行了测试和评价。该试验场位于意大利北部,靠近特伦蒂诺地区的索弗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WebGL virtual globe for efficient forest production planning in mountainous area
This paper illustrates a 3D web-based visual simulation system that supports spatial-information based realistic modelling and real-time rendering of forest scenes. 3D visualization of forest landscapes will be used to understand stand ecological succession, landscape transformation helping regional planning and improving decision-making processes and forest management through what-if analysis tools. The goal of the presented project is to deploy a web system able to easily provide access to forestry information, typically managed in GIS or dedicated system, ensuring the fruition of this information to non-geospatial experts like forest owners and field operators.Technologies such as HTML5, WebGL, CSS 3D and Canvas element have been chosen as the most suitable for the interactive visualization of the forest model placed in the context of a virtual globe representation of the Earth using a highly customized version of the CesiumJS virtual globe, called GeoBrowser3D. Powered by WebGL and state of the art software technologies it offers a three-dimensional Open Geospatial Consortium (OGC) compliant solution, integrated with computational and visual techniques for decision making environments. This solution allows large scale GIS data visualization such as maps and forest models, as well as high detail small scale information such as point clouds or stems structures that are automatically generated according to inventory database and pre-designed template models. Additionally, forest activity planners can have access to larger scale datasets like roads and cadastral maps as well as single timber information. The system has been tested and evaluated in applications of walkthrough simulation and forest visualization. The test site is situated in Northern Italy, close to Sover in the Trentino region.
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