Spatial domain decomposition for coding image sequences

R. Clarke, P. Cordell
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Abstract

Summary form only given. A spatial technique for the efficient adaptive coding of image sequences at low data rates is reported. The technique has the advantage of simple implementation for real-time operation and allows the matching of coding resolution to variations in image detail. The basis of the technique is a recursive quadtree division of image frames into successively smaller and smaller blocks until the original picture detail can be adequately represented by a bilinear interpolation from the four block corner points. At this point subdivision ceases and information is transmitted about the structure of the quadtree division and any new corner points needed for interpolation (for most blocks, some corner points will have already been coded to reconstruct previous blocks). Initial problems with the application of the algorithm to an image sequence derived from the effects of noise causing random failure of the threshold test and errors in corner point values, which are then spread over the whole block by the reconstruction interpolation. Methods of counteracting these effects as well as techniques for optimizing the quantization of sample values, particularly in the case of the processing of small blocks, have been developed.<>
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空间域分解编码图像序列
只提供摘要形式。报道了一种低数据速率下图像序列的空间自适应编码技术。该技术实现简单,便于实时操作,并允许编码分辨率与图像细节变化相匹配。该技术的基础是将图像帧递归四叉树划分为连续越来越小的块,直到原始图像细节可以由四个块角点的双线性插值充分表示。此时,细分停止,并传输有关四叉树划分的结构和插值所需的任何新角点的信息(对于大多数块,一些角点将已经编码以重建以前的块)。将该算法应用于图像序列的初始问题源于噪声的影响,导致阈值测试的随机失败和角点值的误差,然后通过重建插值将其扩展到整个块。已经开发了抵消这些影响的方法以及优化样本值量化的技术,特别是在处理小块的情况下
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