全景无人机景观遗产分析与历史地图地图集集成

R. Brumana, D. Oreni, M. Alba, L. Barazzetti, B. Cuca, M. Scaioni
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引用次数: 13

摘要

景观遗产的分析和致力于其保护和保存的领土转变越来越依赖于综合学科的贡献。2000年,欧洲景观公约确立了“将景观纳入其区域和城镇规划政策以及文化、环境、农业、社会和经济政策”的必要性。这种明确的领土维度需要一种能够考虑来自不同空间和时间序列的多维数据和信息的方法,以支持不同观点下的领土分析和空间规划。大多数景观表示工具都是基于基于自上而下的图像/视图的3D模型,重现类似人眼的视图或沿着优先方向(例如水边视图)绘制地表发展的可能性仍然很弱。重新发现历史水景地图、路线地图和人眼地图视角的悠久传统的方法论方法,可以改善具有环境维度的文化遗产的内容解码,并将其知识传递给规划者和公民。本研究描述了在观测者高度或沿视点前方模拟真实场景的实验多视点模型。本文研究了从RC/UAV平台和多感官系统获取的图像中模拟和重建全景视图的可能性,测试了景观河岸区和海滨视图表示的正射影像生成,验证了图像定向和DTM提取(AtiPE, ATE)自动算法在此类复杂图像模型上的应用,确定了未来发展的关键方面。基于多维、多时相空间数据基础设施(SDI)的地理地图集,通过技术水景图和三维全景图,展示了在支持可持续规划、环境影响评估(EIA)和公认旅游改善方面的未来成就潜力。
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Panoramic UAV Views for Landscape Heritage Analysis Integrated with Historical Maps Atlases
Analysis of landscape heritage and territorial transformations dedicated to its protection and preservation rely increasingly upon the contribution of integrated disciplines. In 2000 the European Landscape Convention established the necessity ‘to integrate landscape into its regional and town planning policies and in its cultural, environmental, agricultural, social and economic policies’. Such articulated territorial dimension requires an approach able to consider multi-dimensional data and information from different spatial and temporal series, supporting territorial analysis and spatial planning under different points of view. Most of landscape representation instruments are based on 3D models based on top-down image/views, with still weak possibilities to reproduce views similar to the human eye or map surface development along preferential directions (e.g. water front views). A methodological approach of rediscovering the long tradition of historical water front view maps, itinerary maps and human eye maps perspective, could improve content decoding of cultural heritage with environmental dimension and its knowledge transfer to planners and citizens. The research here described experiments multiple view models which can simulate real scenarios at the height of observer or along view front. The paper investigates the possibilities of panoramic views simulation and reconstruction from images acquired by RC/UAV platforms and multisensory systems, testing orthoimage generation for landscape riparian areas and water front wiew representation, verifying the application of automatic algorithms for image orientation and DTM extraction (AtiPE, ATE) on such complex image models, identifying critical aspects for future development. The sample landscape portion along ancient water corridor, with stratified values of anthropogenic environment, shows the potentials of future achievement in supporting sustainable planning through technical water front view map and 3D panoramic views, for Environmental Impact Assessment (EIA) purposes and for the improvement of an acknowledged tourism within geo-atlas based on multi-dimensional and multitemporal Spatial Data Infrastructures (SDI).
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