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Efficient document rendering with enhanced run length encoding

机译:高效文档渲染,具有增强的运行长度编码

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Document imaging and transmission systems (typically MFPs) require both effective and efficient image rendering methods that support standard data formats for a variety of document types, and allow for real time implementation. Since most conventional raster formats (e. g. TIFF, PDF, JPEG) are designed for use with either black and white text, or continuous-tone images, more specialized rendering methods are often required for representing mixed content documents. The baseline TIFF format supports a few binary compression options: PackBits, CCITT G3 and G4. Conventionally, halftoning algorithms, such as error diffusion, can be used to create a binary representation of a document image in the TIFF format. However, PackBits, CCITT G3 and G4 compression generally do not produce desired compression on halftone images. In this paper, we propose an efficient error diffusion algorithm optimized for PackBits compression. This method, which we refer to as POED (PackBits optimized error diffusion), is a form of threshold modulation error diffusion which takes advantage of the byte-oriented run length structure of PackBits compression by encouraging repetition of bytes in the resulting binary image. To maintain the sharpness of text, a binary segmentation algorithm is provided to switch off the adaptive error diffusion procedure and switch on the Floyd Steinberg error diffusion procedure in text regions. The POED method with PackBits compression yields higher compression ratios than the conventional error diffusion method, while maintaining desirable visual quality with low computational and memory requirements. We show experimental results to compare our method with the Floyd Steinberg error diffusion method
机译:文档成像和传输系统(通常MFPS)需要有效且有效的图像呈现方法,用于支持各种文档类型的标准数据格式,并允许实时实现。由于大多数传统的光栅格式(例如,TIFF,PDF,JPEG)设计用于黑白文本或连续音调图像,通常需要更专用的渲染方法来代表混合内容文档。基线TIFF格式支持一些二进制压缩选项:PackBits,CCITT G3和G4。传统上,可以使用诸如误差扩散的半色调算法,以以TIFF格式创建文档图像的二进制表示。但是,PackBits,CCITT G3和G4压缩通常不会在半色调图像上产生所需的压缩。在本文中,我们提出了一种优化Packbits压缩的有效误差扩散算法。我们将其称为POPED(PackBits优化误差扩散)的方法是阈值调制误差扩散的形式,通过鼓励在所得到的二进制图像中鼓励重复字节来利用PackBits压缩的字节导向的运行长度结构。为了保持文本的清晰度,提供了二进制分割算法,以关闭自适应误差扩散程序并在文本区域中打开浮岩斯坦伯格误差扩散过程。具有PackBits压缩的PoED方法比传统的误差扩散方法产生更高的压缩比,同时保持所需的视觉质量,具有低计算和存储器要求。我们展示了实验结果,以将我们的方法与Floyd Steinberg误差扩散方法进行比较

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