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首页> 外文期刊>The International journal of robotics research >Field Testing of an Integrated Surface/Subsurface Modeling Technique for Planetary Exploration
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Field Testing of an Integrated Surface/Subsurface Modeling Technique for Planetary Exploration

机译:行星探测综合表面/地下建模技术的现场测试

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摘要

While there has been much interest in developing ground-penetrating radar (GPR) technology for rover-based planetary exploration, relatively little work has been done on the data collection process. Starting from the manual method, we fully automate GPR data collection using only sensors typically found on a rover. Further, we produce two novel data products: (1) a three-dimensional, photorealistic surface model coupled with a ribbon of GPR data, and (2) a two-dimensional, topography-corrected GPR radargram with the surface topography plotted above. Each result is derived from only the onboard sensors of the rover, as would be required in a planetary exploration setting. These techniques were tested using data collected in a Mars analogue environment on Devon Island in the Canadian High Arctic. GPR transects were gathered over polygonal patterned ground similar to that seen on Mars by the Phoenix Lander. Using the techniques developed here, scientists may remotely explore the interaction of the surface topography and subsurface structure as if they were on site.
机译:尽管人们对开发用于基于火星车的行星探测的探地雷达(GPR)技术非常感兴趣,但在数据收集过程中所做的工作却相对较少。从手动方法开始,我们仅使用流动站上通常存在的传感器就可以完全自动执行GPR数据收集。此外,我们产生了两种新颖的数据产品:(1)结合了GPR数据带的三维逼真表面模型,以及(2)上面绘制了表面形貌的二维,经地形校正的GPR雷达图。每个结果仅来自流动站的车载传感器,这在行星探测环境中是必需的。这些技术是使用在加拿大高北极地区德文岛的火星模拟环境中收集的数据进行测试的。 GPR断面收集在多边形图案的地面上,类似于凤凰城着陆器在火星上看到的地面。使用这里开发的技术,科学家们可以像在现场一样远程探索表面地形和地下结构的相互作用。

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