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Joint decoding of unequally protected JPEG2000 bitstreams and Reed-Solomon codes.
Sohail Bahmani1, Ivan V Bajic, Atousa Hajshirmohammadi
1School of Engineering Science, Simon Fraser University, Burnaby, BC, V5A 1S6 Canada. sbahmani@andrew.cmu.edu
This study introduces a faster joint decoding method for JPEG2000 images and Reed-Solomon codes, improving error correction in data transmission. The accelerated approach maintains image quality while significantly reducing processing time.
Area of Science:
- Digital image compression
- Error correction coding
Background:
- JPEG2000 bitstreams offer error resilience.
- Reed-Solomon codes are used for error correction.
- Unequal loss protection is crucial for multimedia transmission.
Purpose of the Study:
- To present a joint decoding method for JPEG2000 and Reed-Solomon codes.
- To accelerate the joint decoding process for improved efficiency.
- To maintain quality enhancement with faster processing.
Main Methods:
- Joint decoding of JPEG2000 bitstreams and Reed-Solomon codes.
- Utilizing JPEG2000 error resilience features.
- Proposing smaller codeblocks and reliable side information for acceleration.
Main Results:
- The joint decoder restores erased symbols when Reed-Solomon decoding fails.
- Accelerated joint decoding significantly reduces processing time.
- Quality enhancement is comparable to non-accelerated methods.
Conclusions:
- Joint decoding enhances error resilience in unequal loss protection scenarios.
- The proposed acceleration techniques make joint decoding more practical.
- Faster joint decoding maintains high image quality and error correction capabilities.
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