首页> 外文期刊>Journal of geophysical research. Planets >Mosaicking of global planetary image datasets: 1. Techniques and data processing for Thermal Emission Imaging System (THEMIS) multi‐spectral data
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Mosaicking of global planetary image datasets: 1. Techniques and data processing for Thermal Emission Imaging System (THEMIS) multi‐spectral data

机译:全球行星图像数据集的镶嵌:1.热辐射成像系统(THEMIS)多光谱数据的技术和数据处理

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The mosaicking of global planetary data sets allows for the examination of local, regional, and global scale processes on all planetary bodies. Processing techniques that allow us and other users to crate mosaics of tens of thousands of images are documented along with the associated errors introduced by each image‐processing algorithm. These techniques (e.g., non‐uniformity correction, running contrast stretches, line and row correlated noise removal, and random noise removal) were originally developed for the 2001 Mars Odyssey Thermal Emission Imaging System (THEMIS) infrared multispectral imager data but can be adapted and applied to other data sets by the alteration of input parameters. The techniques for mosaicking planetary image data sets (e.g., image registration, blending, and normalization) are also presented along with the generation of qualitative and quantitative products. These techniques are then applied to generate THEMIS daytime and nighttime infrared, Viking, Context Imager (CTX), and Mars Orbiter Camera (MOC) visible mosaics using a variety of input and output types at a variety of scales. By creating mosaics of the same area using different data sets such as those that illustrate compositional diversity, thermophysical properties, or small‐scale morphology, it is possible to view the surface of the planet and geologic problems through many different perspectives. In addition to the techniques used to create large‐scale seamless mosaics, we also present the THEMIS daytime and nighttime relative temperature global mosaics, which are the highest resolution (100m/pixel) global scale data sets available for Mars to date.
机译:全球行星数据集的镶嵌可以检查所有行星体上的局部,区域和全球规模过程。记录了允许我们和其他用户创建成千上万张图像的马赛克的处理技术,以及每种图像处理算法引入的相关错误。这些技术(例如,非均匀性校正,连续对比度拉伸,行和行相关的噪声去除以及随机噪声去除)最初是为2001年火星奥德赛热发射成像系统(THEMIS)红外多光谱成像器数据开发的,但可以进行调整和通过更改输入参数将其应用于其他数据集。还提出了镶嵌行星图像数据集的技术(例如,图像配准,混合和归一化)以及定性和定量乘积的生成。然后将这些技术应用于使用各种规模的各种输入和输出类型来生成THEMIS白天和夜间红外,维京,背景成像器(CTX)和火星轨道摄像机(MOC)可见镶嵌图。通过使用不同的数据集(例如说明成分多样性,热物理性质或小规模形态的数据集)创建同一区域的镶嵌图,可以通过许多不同的角度查看行星表面和地质问题。除了用于创建大型无缝拼接的技术外,我们还介绍了THEMIS白天和夜间相对温度的全局拼接,这是迄今为止火星上可用的最高分辨率(100m /像素)的全局比例数据集。

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