Inside the ice shelf: using augmented reality to visualise 3D lidar and radar data of Antarctica

Inside the ice shelf: using augmented reality to visualise 3D lidar and radar data of Antarctica
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冰架内部:使用增强现实可视化南极洲的 3D 激光雷达和雷达数据

DOI:
10.1111/phor.12298
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发表时间:
2019
期刊:
The Photogrammetric Record
影响因子:
--
通讯作者:
Bell, Robin E.
Bell, Robin E.
中科院分区:
--
文献类型:
--
作者:
Boghosian, Alexandra L.;Pratt, Martin J.;Becker, Maya K.;Cordero, S. Isabel;Dhakal, Tejendra;Kingslake, Jonathan;Locke, Caitlin D.;Tinto, Kirsty J.;Bell, Robin E.

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从2015年到2017年,Rosetta-Ice项目使用新开发的航空地球物理平台IcePod全面绘制了南极洲的罗斯冰架。这场战役用激光雷达对冰架表面进行了成像,并用探冰雷达对其内部结构进行了成像。Rosetta-Ice数据与现有的冰面和海床地形数字高程模型相结合,使用微软全息透镜创建了第一个南极冰盖的增强现实(AR)可视化。Rosetta-Ice数据集支持旨在了解4D过程的跨学科科学,即3D冰架结构随时间的变化。这里介绍的工作使用AR将这个数据集以3D形式可视化,并强调了AR如何同时成为跨学科地球科学的有用研究工具以及科学传播教育的有效工具。
From 2015 to 2017, the ROSETTA‐Ice project comprehensively mapped Antarctica's Ross Ice Shelf using IcePod, a newly developed aerogeophysical platform. The campaign imaged the ice‐shelf surface with lidar and its internal structure with ice‐penetrating radar. The ROSETTA‐Ice data was combined with pre‐existing ice surface and bed topography digital elevation models to create the first augmented reality (AR) visualisation of the Antarctic Ice Sheet, using the Microsoft HoloLens. The ROSETTA‐Ice datasets support cross‐disciplinary science that aims to understand 4D processes, namely the change of 3D ice‐shelf structures over time. The work presented here uses AR to visualise this dataset in 3D and highlights how AR can be simultaneously a useful research tool for interdisciplinary geoscience as well as an effective device for science communication education.
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