DocumentCode :
3178524
Title :
Techniques to improve decoded video quality for erroneous H.264 bit streams in an asynchronous multiprocessor architecture
Author :
Rajendran, Resmi ; Shastry, Pavan
Author_Institution :
Video Signal Process., Texas Instrum. India Pvt. Ltd., Bangalore, India
fYear :
2012
fDate :
22-25 July 2012
Firstpage :
1
Lastpage :
5
Abstract :
A conventional synchronous single processor decoder system can no longer cater to the demands of the market in terms of processing speed. A modern asynchronous multiprocessor architecture partitions the decoding functions into different processing cores so that real time decoding of high mega pixel streams is achieved by parallel execution. The number of processor cores is a balance between chip area, processing Mhz requirements and the latency incurred in the pipeline. Error handling on a modern asynchronous multiprocessor architecture is far more involved compared to its synchronous counterparts. This paper presents a software design and methodology in order to achieve better error resilience and concealment quality in a High Profile H.264 Universal Decoder on an asynchronous multiprocessor architecture. It involves robust error handling and error recovery, detection and handling of possible start code overrun, overcoming limitations due to the extremely efficient software design, improved error detection logic, and improvements in End of Picture Detection. Average PSNR improvement of 0.35 dB and maximum 4 dB has been obtained by these techniques, when tested on an error stream test suite of more than 100 randomly corrupted streams.
Keywords :
data compression; decoding; error detection; error handling; multiprocessing systems; parallel architectures; video coding; video streaming; asynchronous multiprocessor architecture; average PSNR; decoded video quality; end of picture detection; erroneous H.264 bit streams; error concealment quality; error detection logic; error recovery; error resilience; error stream test; high mega pixel stream decoding; high profile H.264 universal decoder; robust error handling; software design; synchronous single processor decoder system; Computer architecture; Decoding; Earth Observing System; PSNR; Software design; Video coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Communications (SPCOM), 2012 International Conference on
Conference_Location :
Bangalore
Print_ISBN :
978-1-4673-2013-9
Type :
conf
DOI :
10.1109/SPCOM.2012.6290042
Filename :
6290042
Link To Document :
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