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首页> 外文期刊>Computer Graphics Forum: Journal of the European Association for Computer Graphics >CheckViz: Sanity Check and Topological Clues for Linear and Non-Linear Mappings
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CheckViz: Sanity Check and Topological Clues for Linear and Non-Linear Mappings

机译:CheckViz:线性和非线性映射的健全性检查和拓扑线索

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摘要

Multidimensional scaling is a must-have tool for visual data miners, projecting multidimensional data onto a two-dimensional plane. However, what we see is not necessarily what we think about. In many cases, end-users do not take care of scaling the projection space with respect to the multidimensional space. Anyway, when using non-linear mappings, scaling is not even possible. Yet, without scaling geometrical structures which might appear do not make more sense than considering a random map. Without scaling, we shall not make inference from the display back to the multidimensional space. No clusters, no trends, no outliers, there is nothing to infer without first quantifying the mapping quality. Several methods to qualify mappings have been devised. Here, we propose CheckViz, a new method belonging to the framework of Verity Visualization. We define a two-dimensional perceptually uniform colour coding which allows visualizing tears and false neighbourhoods, the two elementary and complementary types of geometrical mapping distortions, straight onto the map at the location where they occur. As examples shall demonstrate, this visualization method is essential to help users make sense out of the mappings and to prevent them from over interpretations. It could be applied to check other mappings as well.
机译:多维缩放是可视数据挖掘者的必备工具,可将多维数据投影到二维平面上。但是,我们看到的不一定是我们所考虑的。在许多情况下,最终用户无需考虑相对于多维空间缩放投影空间。无论如何,当使用非线性映射时,缩放甚至是不可能的。但是,如果不缩放可能出现的几何结构,则比考虑随机映射没有任何意义。如果不进行缩放,我们将无法从显示返回到多维空间。没有聚类,没有趋势,没有离群值,没有先量化映射质量就没有任何推断。已经设计出几种限定映射的方法。在这里,我们提出CheckViz,这是一种属于Verity Visualization框架的新方法。我们定义了二维的感知统一颜色编码,该编码可以可视化眼泪和假居民区,这是两种基本和互补类型的几何映射变形,直接出现在地图上。如示例所示,此可视化方法对于帮助用户理解映射并防止其过度解释至关重要。它也可以应用于检查其他映射。

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