Title :
An effective joint source-channel coding with unequal error protection using asymmetric turbo codes
Author :
Wang, Hanxin ; Zhu, Cuitao ; Xiong, Chengyi ; Chen, Shaoping
Author_Institution :
Dept. of Electron. & Inf. Eng., South-Central Univ. for Nat., Wuhan, China
Abstract :
In this paper, we firstly present a novel interleaver to improve the error correction performance of turbo codes. Secondly, we devise two types of asymmetric turbo codes to optimize the bit error rate of both water fall and error floor. Finally, we propose an efficient joint source-channel coding scheme based on unequal error protection technology using asymmetric turbo codes. The proposed scheme can adaptively adopt different coding strategies, different interleavers of turbo codes, various decoding algorithms and appropriate decoding iterative numbers in terms of the different significant levels of image data streams and the varying conditions of estimated channel state information. This scheme can also dynamically adjust the source and channel code rates according to the calculated peak signal to noise ratio of reconstructed images and the estimated channel states. The experimental results show that the proposed scheme can evidently increase the peak signal to noise ratio of the reconstructed images and improve the visual effect of the images but with no additional bandwidth, the scheme is more adaptive and feasible.
Keywords :
channel coding; channel estimation; decoding; error correction codes; error statistics; image coding; image reconstruction; interleaved codes; media streaming; source coding; turbo codes; asymmetric turbo code; bit error rate; channel state estimation; channel state information; coding strategies; decoding algorithm; decoding iterative number; error correction performance; error floor; image data stream; interleaver; peak signal to noise ratio; reconstructed image; source-channel coding; unequal error protection; visual effect; water fall; Complexity theory; Image recognition; Multimedia communication; Signal to noise ratio; Streaming media; Asymmetric turbo codes; Interleaver; Joint source-channel coding; Peak signal to noise ratio; Unequal error protection;
Conference_Titel :
Advanced Communication Technology (ICACT), 2012 14th International Conference on
Conference_Location :
PyeongChang
Print_ISBN :
978-1-4673-0150-3