DocumentCode :
2894657
Title :
Improved distance coding of binary images by run length coding of the most probable interval
Author :
Liaghati, Amir L. ; Pan, W. David
Author_Institution :
Boeing Co., Huntsville, AL, USA
fYear :
2015
fDate :
9-12 April 2015
Firstpage :
1
Lastpage :
7
Abstract :
We proposed a new method to improve our previous work on efficient distance-coding of binary images, where we compressed a binary image by applying the bzip2 lossless data compressor on a sequence of intervals, which represent the distances between identical source symbols - either zeros or ones for binary images. Motivated by the observation that a majority of intervals tends to be one, we propose to run-length code this most probable interval independently from the rest of the intervals. Separate Huffman coding tables were used to code the run-lengths of the most probable interval versus other intervals. Consequently, this hybrid coding scheme allows a fraction of one bit to be assigned to the most probable interval on average, as opposed to at least one bit per interval without run-length coding, thereby contributing to about 17% improvement on the compression ratios on some test images.
Keywords :
Huffman codes; data compression; image coding; runlength codes; Huffman coding tables; binary images; bzip2 lossless data compressor; compression ratios; distance coding improvement; hybrid coding scheme; identical source symbols; run length coding; Biomedical imaging; Decoding; Encoding; Entropy; Image coding; Image reconstruction; Propagation losses; Huffman coding; binary images; bzip2; distance coding; entropy; lossless compression; run-length encoding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SoutheastCon 2015
Conference_Location :
Fort Lauderdale, FL
Type :
conf
DOI :
10.1109/SECON.2015.7132957
Filename :
7132957
Link To Document :
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