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Simultaneous Embedding and Level Planarity

机译:同时嵌入和水平平面

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摘要

Graphs are a common model for representing information consisting of a set of objects or entities and a set of connections or relations between them. Graph Drawing is concerned with the automatic visualization of graphs in order to make the information useful. That is, a good drawing should be helpful in the application domain where it is used by capturing the relationships in the underlying data. We consider two important problems in automated graph drawing: simultaneous embedding and level planarity. Simultaneous embedding is the problem of drawing multiple graphs while maintaining the readability of each graph independently and preserving the mental map when going from one graph to another. In this case, each graph has the same vertex set (same entities) but different edge sets (different relationships). Level planarity arises in the layout of graphs that contain hierarchical relationships. When drawing graphs in the plane, this translates to a restricted form of planarity where the vertical order of the entities is pre-determined. We consider the computational complexity of the simultaneous embedding problem. In particular, we show that in its generality the simultaneous embedding problem is NP-hard if the edges are drawn as straight-lines. We present algorithms for drawing graphs on predetermined levels, which allow the simultaneous embedding of restricted types of graphs, such as outerplanar graphs, trees and paths. Finally, our practical contribution is a tool that implements known and novel algorithms related to simultaneous embedding and level planarity and can be used both as a visualization software and as an aid to study theoretical problems.
机译:图是一种常见的模型,用于表示由一组对象或实体以及它们之间的一组连接或关系组成的信息。 Graph Drawing(图形绘图)与图形的自动可视化有关,以使信息有用。就是说,一个好的图纸应该通过捕获基础数据中的关系在使用它的应用程序领域中有所帮助。我们考虑了自动图形绘制中的两个重要问题:同时嵌入和平面平整度。同时嵌入是绘制多个图同时保持每个图的可读性并保留从一个图到另一个图的思维导图的问题。在这种情况下,每个图都具有相同的顶点集(相同的实体)但具有不同的边集(不同的关系)。包含分层关系的图的布局中的层级平面度上升。在平面上绘制图形时,这转化为平面形式的受限形式,其中实体的垂直顺序是预先确定的。我们考虑了同时嵌入问题的计算复杂性。特别是,我们证明,如果将边缘绘制为直线,则同时嵌入问题通常是NP难的。我们提出了用于在预定级别上绘制图的算法,该算法允许同时嵌入受限类型的图,例如外平面图,树和路径。最后,我们的实际贡献是实现与同时嵌入和水平平面相关的已知和新颖算法的工具,既可以用作可视化软件,也可以用作研究理论问题的辅助工具。

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