GRay: Ray Casting for Visualization and Interactive Data Exploration of Gaussian Mixture Models

被引:1
|
作者
Lawonn K. [1 ]
Meuschke M. [2 ]
Eulzer P. [1 ]
Mitterreiter M. [1 ]
Giesen J. [1 ]
Gunther T. [3 ]
机构
[1] Friedrich Schiller University of Jena, Germany
[2] Otto von Guericke University of Magdeburg, Germany
[3] Friedrich-Alexander-Universitä T Erlangen-Nürnberg, Germany
关键词
Gaussian mixture models; ray casting; Scientific visualization; volume visualization;
D O I
10.1109/TVCG.2022.3209374
中图分类号
学科分类号
摘要
The Gaussian mixture model (GMM) describes the distribution of random variables from several different populations. GMMs have widespread applications in probability theory, statistics, machine learning for unsupervised cluster analysis and topic modeling, as well as in deep learning pipelines. So far, few efforts have been made to explore the underlying point distribution in combination with the GMMs, in particular when the data becomes high-dimensional and when the GMMs are composed of many Gaussians. We present an analysis tool comprising various GPU-based visualization techniques to explore such complex GMMs. To facilitate the exploration of high-dimensional data, we provide a novel navigation system to analyze the underlying data. Instead of projecting the data to 2D, we utilize interactive 3D views to better support users in understanding the spatial arrangements of the Gaussian distributions. The interactive system is composed of two parts: (1) raycasting-based views that visualize cluster memberships, spatial arrangements, and support the discovery of new modes. (2) overview visualizations that enable the comparison of Gaussians with each other, as well as small multiples of different choices of basis vectors. Users are supported in their exploration with customization tools and smooth camera navigations. Our tool was developed and assessed by five domain experts, and its usefulness was evaluated with 23 participants. To demonstrate the effectiveness, we identify interesting features in several data sets. © 2022 IEEE.
引用
收藏
页码:526 / 536
页数:10
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