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首页> 外文期刊>Journal of Visual Languages & Computing >A new force-directed graph drawing method based on edge-edge repulsion
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A new force-directed graph drawing method based on edge-edge repulsion

机译:基于边缘-边缘排斥的力导向图绘制新方法

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摘要

The conventional force-directed methods for drawing undirected graphs are based on either vertex-vertex repulsion or vertex-edge repulsion. In this paper, we propose a new force-directed method based on edge-edge repulsion to draw graphs. In our framework, edges are modelled as charged springs, and a final drawing can be generated by adjusting positions of vertices according to spring forces and the repulsive forces, derived from potential fields, among edges. Different from the previous methods, our new framework has the advantage of overcoming the problem of zero angular resolution, guaranteeing the absence of any overlapping of edges incident to the common vertex. Given graph layouts probably generated by previous algorithms as the inputs to our algorithm, experimental results reveal that our approach produces promising drawings not only preserving the original properties of a high degree of symmetry and uniform edge length, but also preventing zero angular resolution and usually having larger average angular resolution. However, it should be noted that exhibiting a higher degree of symmetry and larger average angular resolution does not come without a price, as the new approach might result in the increase in undesirable overlapping of vertices as some of our experimental results indicate. To ease the problem of node overlapping, we also consider a hybrid approach which takes into account both edge-edge and vertex-vertex repulsive forces in drawing a graph.
机译:用于绘制无向图的常规力导向方法是基于顶点-顶点排斥或顶点-边缘排斥。在本文中,我们提出了一种基于边缘排斥的力导向方法来绘制图形。在我们的框架中,将边缘建模为加载的弹簧,然后可以根据边缘之间的弹簧力和排斥力(通过从势场得出的排斥力)来调整顶点的位置,从而生成最终图形。与以前的方法不同,我们的新框架具有克服零角度分辨率问题的优点,从而保证了入射到公共顶点的边不会重叠。给定可能由先前算法生成的图形布局作为算法的输入,实验结果表明,我们的方法不仅可以保留高对称度和均匀边缘长度的原始属性,而且可以防止零角度分辨率,并且通常具有更大的平均角分辨率。但是,应该注意的是,展现出更高的对称度和更大的平均角分辨率并不是没有代价的,因为如我们的一些实验结果所示,这种新方法可能会导致不希望的顶点重叠增加。为了缓解节点重叠的问题,我们还考虑了一种混合方法,该方法在绘制图形时同时考虑了边缘-边缘和顶点-顶点的排斥力。

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