Hajdu András, Pitas Ioannis
Department of Informatics, Aristotle University of Thessaloniki, Greece.
IEEE Trans Image Process. 2008 Feb;17(2):126-33. doi: 10.1109/TIP.2007.914202.
The use of an alphabet of line segments to compose a curve is a possible approach for curve data compression. Many approaches are developed with the drawback that they can process simple curves only. Curves having more sophisticated topology with self-intersections can be handled by methods considering recursive decomposition of the canvas containing the curve. In this paper, we propose a graph theory-based algorithm for tracing the curve directly to eliminate the decomposition needs. This approach obviously improves the compression performance, as longer line segments can be used. We tune our method further by selecting optimal turns at junctions during tracing the curve. We assign a polygon approximation to the curve which consists of letters coming from an alphabet of line segments. We also discuss how other application fields can take advantage of the provided curve description scheme.
使用线段字母表来构成曲线是一种用于曲线数据压缩的可行方法。已经开发出了许多方法,但缺点是它们只能处理简单曲线。对于具有更复杂拓扑结构且有自相交的曲线,可以通过考虑对包含曲线的画布进行递归分解的方法来处理。在本文中,我们提出了一种基于图论的算法,用于直接追踪曲线以消除分解需求。这种方法显然提高了压缩性能,因为可以使用更长的线段。我们通过在追踪曲线时在交点处选择最优转向来进一步调整我们的方法。我们为曲线分配一个多边形近似,该多边形由来自线段字母表的字母组成。我们还讨论了其他应用领域如何利用所提供的曲线描述方案。