Visualizing information on a sphere

M. Gross, T. Sprenger, J. Finger
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引用次数: 52

Abstract

We describe a method for the visualization of information units on spherical domains which is employed in the banking industry for risk analysis, stock prediction and other tasks. The system is based on a quantification of the similarity of related objects that governs the parameters of a mass-spring system. Unlike existing approaches we initialize all information units onto the inner surface of two concentric spheres and attach them with springs to the outer sphere. Since the spring stiffnesses correspond to the computed similarity measures, the system converges into an energy minimum which reveals multidimensional relations and adjacencies in terms of spatial neighborhoods. Depending on the application scenario our approach supports different topological arrangements of related objects. In order to cope with large data sets we propose a blobby clustering mechanism that enables encapsulation of similar objects by implicit shapes. In addition, we implemented various interaction techniques allowing semantic analysis of the underlying data sets. Our prototype system IVORY is written in Java, and its versatility is illustrated by an example from financial service providers.
在球体上可视化信息
我们描述了一种在银行业用于风险分析、股票预测和其他任务的球形域上的信息单元的可视化方法。该系统基于控制质量-弹簧系统参数的相关对象的相似性的量化。与现有的方法不同,我们将所有的信息单元初始化到两个同心球体的内表面,并用弹簧将它们连接到外球体。由于弹簧刚度对应于计算的相似度量,系统收敛到能量最小值,该能量最小值显示了空间邻域的多维关系和邻接关系。根据应用场景的不同,我们的方法支持相关对象的不同拓扑安排。为了处理大型数据集,我们提出了一种blobby聚类机制,可以通过隐式形状封装相似的对象。此外,我们实现了各种交互技术,允许对底层数据集进行语义分析。我们的原型系统IVORY是用Java编写的,并通过一个金融服务提供商的例子说明了它的多功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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