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Memory efficient error diffusion

机译:记忆有效的错误扩散

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Li and Allebach recently proposed parameter-trainable tone dependent error diffusion (TDED) which yields outstanding halftone (quality among error diffusion based algorithms. In TDED, the tone dependent weights and thresholds as well as a halftone bitmap for threshold modulation are implemented as look-up tables (LUTs) which consume on-chip memory. In addition, the diffused errors must be buffered in on-chip memory and in most cases, transferred to off-chip memory. However, off-chip memory access considerably deteriorates system performance. In this paper, we propose two approaches to improve memory efficiency. First, we use deterministic bit flipping to replace threshold modulation, and linearize the weights and thresholds of TDED. This reduces the memory requirement by using only a few constants, rather than full LUTs, and generates halftones whose quality is nearly indistinguishable from that of standard TDED. Secondly, we propose a block-based processing strategy which significantly reduces off-chip memory access. We devise a novel scan-path which enables our algorithm to process any input image block-by-block without yielding block-boundary artifacts. Special filters are designed and optimized for the block diagonals so that the resulting halftone quality is comparable to that of standard TDED.
机译:Li和Allebach最近提出其产生基于误差扩散算法中优秀的半色调(质量参数可训练音调相关的误差扩散(TDED),在TDED,色调依赖权值和阀值以及用于阈值调制半色调位图作为look-实现表(LUT),其消耗的片上存储器。此外,该扩散误差必须在芯片上存储器和在大多数情况下,转移到片外存储器中缓冲,但是,芯片外存储器访问显着恶化系统性能。在本文中,我们提出了两种方法来提高存储效率。首先,我们使用确定性的位翻转更换阈值调制,并线性TDED的权重和阈值。这仅使用几个常数减少对内存的需求,而不是完整的LUT ,并生成半色调,其质量也与标准TDED的几乎没有区别。其次,我们提出了一种基于块的处理策略,significantl ÿ降低的片外存储器访问。我们设计了一种新的扫描路径,其使得我们的算法来处理任何输入图像块逐块而不屈服块的边界伪影。特殊的过滤器的设计和用于所述块对角线优化,使得所得到的半色调质量比得上标准TDED的。

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