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Low-complexity high-performance multiscale error diffusion technique for digital halftoning

机译:用于数字半色调的低复杂度高性能多尺度误差扩散技术

摘要

Multiscale error diffusion (MED) is superior to conventional error diffusion algorithms as it can eliminate directional hysteresis completely. However, due to its frame-oriented processing nature, the computational complexity is comparatively high. Furthermore, though theoretically MED can remove directional hysteresis by eliminating predefined scanning paths and causal filters, no comprehensive quantitative analysis on this issue can be found in the literature. A fast MED algorithm is proposed and a detailed analysis on the performance of various MED algorithms including the proposed one are provided. Analysis and simulation results show that the proposed algorithm can reduce the computational complexity without sacrificing the image quality as compared with conventional MED algorithms. The proposed algorithm also supports parallel processing and hence can further reduce the processing time.
机译:多尺度误差扩散(MED)优于常规误差扩散算法,因为它可以完全消除方向滞后。但是,由于其面向帧的处理性质,因此计算复杂度较高。此外,尽管从理论上说,MED可以通过消除预定义的扫描路径和因果滤波器来消除方向性磁滞现象,但在文献中找不到关于此问题的全面定量分析。提出了一种快速的MED算法,并对包括所提出的算法在内的各种MED算法的性能进行了详细的分析。分析和仿真结果表明,与传统的MED算法相比,该算法可以在不牺牲图像质量的前提下降低计算复杂度。所提出的算法还支持并行处理,因此可以进一步减少处理时间。

著录项

  • 作者

    Fung YH; Lui KC; Chan YH;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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