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Principles of high-dimensional data visualization in astronomy

机译:天文学中高维数据可视化的原理

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Astronomical researchers often think of analysis and visualization as separate tasks. In the case of high-dimensional data sets, though, interactive exploratory data visualization can give far more insight than an approach where data processing and statistical analysis are followed, rather than accompanied, by visualization. This paper attempts to charts a course toward "linked view" systems, where multiple views of high-dimensional data sets update live as a researcher selects, highlights, or otherwise manipulates, one of several open views. For example, imagine a researcher looking at a 3D volume visualization of simulated or observed data, and simultaneously viewing statistical displays of the data set's properties (such as an x -y plot of temperature vs. velocity, or a histogram of vorticities). Then, imagine that when the researcher selects an interesting group of points in any one of these displays, that the same points become a highlighted subset in all other open displays. Selections can be graphical or algorithmic, and they can be combined, and saved. For tabular (ASCII) data, this kind of analysis has long been possible, even though it has been under-used in astronomy. The bigger issue for astronomy and other "high-dimensional" fields, though, is that no extant system allows for full integration of images and data cubes within a linked-view environment. The paper concludes its history and analysis of the present situation with suggestions that look toward cooperatively-developed open-source modular software as a way to create an evolving, flexible, high-dimensional, linked-view visualization environment useful in astro-physical research
机译:天文学研究人员通常将分析和可视化视为独立的任务。但是,在高维数据集的情况下,交互式探索性数据可视化可以提供比可视化跟随而不是伴随数据处理和统计分析的方法更多的见识。本文试图通过“链接视图”系统绘制路线图,其中随着研究人员选择,突出显示或以其他方式操纵多个打开视图之一,实时更新高维数据集的多个视图。例如,假设研究人员查看模拟或观察到的数据的3D体积可视化,并同时查看数据集属性的统计显示(例如温度与速度的x -y图或涡度直方图)。然后,想象一下,当研究人员在这些显示中的任何一个中选择一组有趣的点时,相同的点将成为所有其他打开的显示中的突出显示子集。选择可以是图形的或算法的,并且可以将它们组合并保存。对于表格(ASCII)数据,即使在天文学中使用不足,这种分析也早已成为可能。但是,对于天文学和其他“高维”领域来说,更大的问题是没有现成的系统允许在链接视图环境中完全集成图像和数据立方体。本文总结了它的历史和对现状的分析,并提出了一些建议,这些建议着眼于合作开发的开源模块化软件,以此来创建一种演化的,灵活的,高维的,链接视图的可视化环境,可用于天体物理学研究

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