Extending the spring-electrical model to overcome warping effects

Yifan Hu, Y. Koren
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引用次数: 14

Abstract

The spring-electrical model based force directed algorithm is widely used for drawing undirected graphs, and sophisticated implementations can be very efficient for visualizing large graphs. However, our practical experience shows that in many cases, layout quality suffers as a result of non-uniform vertex density. This gives rise to warping effects in that vertices on the outskirt of the drawing are often closer to each other than those near the center, and branches in a tree-like graph tend to cling together. In this paper we propose algorithms that overcome these effects. The algorithms combine the efficiency and good global structure of the spring-electrical model, with the flexibility of the Kamada-Kawai stress model of in specifying the ideal edge length, and are very effective in overcoming the warping effects.
扩展弹簧-电模型以克服翘曲效应
基于弹簧电模型的力有向算法被广泛用于绘制无向图,复杂的实现可以非常有效地实现大型图的可视化。然而,我们的实践经验表明,在许多情况下,布局质量受到不均匀顶点密度的影响。这就产生了扭曲效果,因为图外围的顶点通常比靠近中心的顶点更接近彼此,而树状图中的分支往往会粘在一起。在本文中,我们提出了克服这些影响的算法。该算法结合了弹簧电模型的高效性和良好的全局结构,以及Kamada-Kawai应力模型在确定理想边缘长度方面的灵活性,在克服翘曲效应方面非常有效。
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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