Directional difference chain codes with quasi-lossless compression and run-length encoding

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摘要

This paper considers a new contour-based representation of binary objects in raster images. Low processing and storage requirements of the decoder, satisfactory compression ratio and generality make this chain coding technique interesting for storing predefined graphical objects in embedded systems. Three improvements of the DDCC code were introduced. Extra Huffman codes are assigned to two frequent pairs of symbols, 135° directional differences in concave angles are omitted since they do not affect the outer object shape and, finally, longer line segments are run-length encoded. Comparison with six other chain coding techniques of similar implementation complexity confirms that the new technique represents an efficient alternative way to encode 8-connected contours.

论文关键词:Directional difference,Chain code,Contour,Data compression,Compressed directional,Difference chain code

论文评审过程:Received 28 October 2011, Accepted 30 July 2012, Available online 14 August 2012.

论文官网地址:https://doi.org/10.1016/j.image.2012.07.008