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首页> 外文期刊>Fresenius environmental bulletin >MULTITEMPORAL ANALYSIS OF COASTAL DYNAMICS BY HIGH-RESOLUTION RECONSTRUCTION OF TOPOGRAPHY USING UAVs
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MULTITEMPORAL ANALYSIS OF COASTAL DYNAMICS BY HIGH-RESOLUTION RECONSTRUCTION OF TOPOGRAPHY USING UAVs

机译:利用无人机进行地形图的高分辨率重构的海岸动力学多时相分析

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Dynamic networks of Unmanned Aerial Vehicles (UAVs) can be used in a broad range of missions like monitoring and surveillance of the coastal environments to detect shoreline changes. The aim of this study is to evaluate topographic changes along a stretch of coastline in the Silivri, which is outside metropolitan Istanbul (along the Sea of Marmara) in Turkey, by means of an UAV coupled with Structure from Motion (SfM) and multi-view stereo techniques. This region was surveyed over 11 months from September 2016 to July 2017 in order to produce digital elevation models and orthophotos of the coastal area by using dense point clouds. Changes in the shore topography associated with usual tide and human activities were assessed in terms of sediment activity and wet-dry boundary shifting that defines the shoreline. The results showed that UAVs can be used for regular coastal monitoring purposes and that they can provide new insights into the processes related to natural and/or human-related topographic coastal changes.
机译:无人飞行器(UAV)的动态网络可用于多种任务,例如监视和监视沿海环境以检测海岸线变化。这项研究的目的是通过无人机结合运动结构(SfM)和多重运动来评估Silivri沿海岸线的地形变化,该海岸位于土耳其大都会伊斯坦布尔(沿着马尔马拉海)查看立体声技术。自2016年9月至2017年7月,对该地区进行了为期11个月的调查,目的是通过使用密集点云生成沿海地区的数字高程模型和正射影像。通过定义海岸线的沉积物活动和干湿边界移动,评估了与通常的潮汐和人类活动相关的海岸地形变化。结果表明,无人机可用于常规海岸监测,并且它们可为与自然和/或与人类相关的地形沿海变化相关的过程提供新的见解。

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