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Topology-Driven Vectorization of Clean Line Drawings

机译:拓扑驱动的清洁线图矢量化

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摘要

Vectorization provides a link between raster scans of pencil-and-paper drawings and modern digital processing algorithms that require accurate vector representations. Even when input drawings are comprised of clean, crisp lines, inherent ambiguities near junctions make vectorization deceptively difficult. As a consequence, current vectorization approaches often fail to faithfully capture the junctions of drawn strokes. We propose a vectorization algorithm specialized for clean line drawings that analyzes the drawing's topology in order to overcome junction ambiguities. A gradient-based pixel clustering technique facilitates topology computation. This topologi-cal information is exploited during centerline extraction by a new "reverse drawing" procedure that reconstructs all possible drawing states prior to the creation of a junction and then selects the most likely stroke configuration. For cases where the automatic result does not match the artist's interpretation, our drawing analysis enables an efficient user interface to easily adjust the junction location. We demonstrate results on professional examples and evaluate the vectorization quality with quantitative comparison to hand-traced centerlines as well as the results of leading commercial algorithms.
机译:矢量化为铅笔和纸质图纸的光栅扫描与需要精确矢量表示的现代数字处理算法之间提供了联系。即使输入图形由干净,明快的线条组成,结点附近的固有模糊性也使矢量化难以实现。结果,当前的矢量化方法经常无法如实地捕获绘制笔触的交界处。我们提出了一种专门用于干净线图的矢量化算法,该算法可以分析图形的拓扑结构,以克服交界处的歧义。基于梯度的像素聚类技术有助于拓扑计算。在中心线提取期间,通过新的“反向绘图”过程来利用此地形信息,该过程在创建交汇点之前重建所有可能的绘图状态,然后选择最可能的笔触配置。对于自动结果与艺术家的解释不符的情况,我们的图纸分析可提供高效的用户界面,轻松调整交汇处的位置。我们在专业示例中演示结果,并通过与手动跟踪的中心线的定量比较以及领先的商业算法的结果来评估矢量化质量。

著录项

  • 来源
    《ACM Transactions on Graphics》 |2013年第1期|4.1-4.11|共11页
  • 作者单位

    ETH Zurich and Disney Research Zurich;

    Walt Disney Animation Studios, M. Gross, ETH Zurich and Disney Research Zurich;

    Walt Disney Animation Studios, M. Gross, ETH Zurich and Disney Research Zurich;

    Walt Disney Animation Studios, M. Gross, ETH Zurich and Disney Research Zurich;

    Walt Disney Animation Studios, M. Gross, ETH Zurich and Disney Research Zurich;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    algorithms; documentation;

    机译:算法;文件资料;

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