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A working environment for digital planetary data processing and mapping using ISIS and GRASS GIS

机译:使用ISIS和GRASS GIS进行数字行星数据处理和制图的工作环境

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Since the beginning of planetary exploration, mapping has been fundamental to summarize observations returned by scientific missions. Sensor-based mapping has been used to highlight specific features from the planetary surfaces by means of processing. Interpretative mapping makes use of instrumental observations to produce thematic maps that summarize observations of actual data into a specific theme. Geologic maps, for example, are thematic interpretative maps that focus on the representation of materials and processes and their relative timing. The advancements in technology of the last 30 years have allowed us to develop specialized systems where the mapping process can be made entirely in the digital domain. The spread of networked computers on a global scale allowed the rapid propagation of software and digital data such that every researcher can now access digital mapping facilities on his desktop.The efforts to maintain planetary missions data accessible to the scientific community have led to the creation of standardized digital archives that facilitate the access to different datasets by software capable of processing these data from the raw level to the map projected one.Geographic Information Systems (GIS) have been developed to optimize the storage, the analysis, and the retrieval of spatially referenced Earth based environmental geodata; since the last decade these computer programs have become popular among the planetary science community, and recent mission data start to be distributed in formats compatible with these systems.Among all the systems developed for the analysis of planetary and spatially referenced data, we have created a working environment combining two software suites that have similar characteristics in their modular design, their development history, their policy of distribution and their support system. The first, the Integrated Software for Imagers and Spectrometers (ISIS) developed by the United States Geological Survey, represents the state of the art for processing planetary remote sensing data, from the raw unprocessed state to the map projected product. The second, the Geographic Resources Analysis Support System (GRASS) is a Geographic Information System developed by an international team of developers, and one of the core projects promoted by the Open Source Geospatial Foundation (OSGeo). We have worked on enabling the combined use of these software systems throughout the set-up of a common user interface, the unification of the cartographic reference system nomenclature and the minimization of data conversion. Both software packages are distributed with free open source licenses, as well as the source code, scripts and configuration files hereafter presented. In this paper we describe our work done to merge these working environments into a common one, where the user benefits from functionalities of both systems without the need to switch or transfer data from one software suite to the other one. Thereafter we provide an example of its usage in the handling of planetary data and the crafting of a digital geologic map.
机译:自从行星探索开始以来,作图一直是总结科学任务返回的观测的基础。基于传感器的映射已用于通过处理从行星表面突出显示特定特征。解释性制图利用工具性观察来产生专题图,将实际数据的观察总结为特定主题。例如,地质图是主题解释性图,着眼于材料和过程及其相对时间的表示。过去30年中技术的进步使我们能够开发专用系统,在该系统中,映射过程可以完全在数字领域进行。联网计算机在全球范围内的普及使软件和数字数据得以快速传播,从而使每个研究人员现在都可以访问其桌面上的数字制图设施。维护科学界可访问的行星任务数据的努力导致了科学界的创建。标准化的数字档案,可通过能够处理从原始级别到投影的地图的数据的软件来促进对不同数据集的访问。已开发了地理信息系统(GIS)以优化对空间参考的存储,分析和检索基于地球的环境地理数据;自上个十年以来,这些计算机程序已在行星科学界中广为流行,并且最近的任务数据开始以与这些系统兼容的格式进行分发。在所有用于分析行星和空间参考数据的系统中,我们创建了一个结合两个软件套件的工作环境,这些软件套件的模块化设计,开发历史,发行策略和支持系统具有相似的特征。第一个是美国地质调查局开发的成像仪和光谱仪集成软件(ISIS),代表了从原始未处理状态到地图投影产品的最新处理卫星遥感数据的技术。第二个是地理资源分析支持系统(GRASS),它是由国际开发人员团队开发的地理信息系统,也是由开源地理空间基金会(OSGeo)推动的核心项目之一。我们致力于在通用用户界面的整个设置过程中组合使用这些软件系统,统一了制图参考系统的术语,并最大程度地减少了数据转换。这两个软件包均附带免费的开放源代码许可,以及以下提供的源代码,脚本和配置文件。在本文中,我们描述了将这些工作环境合并到一个通用环境中而完成的工作,用户可以从两个系统的功能中受益,而无需将数据从一个软件套件切换到另一个软件套件或将其传输到另一个软件套件。此后,我们提供了其在行星数据处理和数字地质地图制作中的用法示例。

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