DocumentCode :
417836
Title :
Optimal error protection for real time image and video transmission
Author :
Farshchian, Masoud ; Cho, Sungdae ; Pearlman, William A.
Volume :
4
fYear :
2004
fDate :
17-21 May 2004
Abstract :
In this paper a novel and computationally inexpensive analytic mean square error (MSE) distortion rate (D-R) estimator for SPIHT which generates a nearly exact distortion rate (D-R) function for the 2D and 3D SPIHT algorithm is presented. The analytical formula is derived from the observations that for any bit-plane coder, the slope of the D-R curve is constant for each level of the bit plane. Furthermore the slope of D-R curve reduces by a factor proportional to the level of the bit plane. An application of the derived results is presented in the area of 2D SPIHT transmission employing a binary symmetric channel (BSC) and Reed Solomon (RS) forward error correction (FEC) codes. Utilizing our D-R estimate, we employ unequal error protection (UEP) and equal error protection (EEP) in order to minimize the end to end mean square error (MSE) distortion of the transform domain. UEP yields a significant performance gain relative to EEP only when the average number of parity bits for a group of packets is constrained. When both the source rate and channel code rate varied under a bit budget constraint, optimal UEP yields only a slight improvement over the optimal EEP. A major contribution of this paper is the simple and extremely accurate analytical D-R model which potentially improves upon pre-existing methodologies and applications that rely on an accurate and computationally inexpensive D-R estimate. Another important contribution is that the optimum EEP, which requires almost no header information and can easily be computed using our method, is only slightly worse than the optimum UEP.
Keywords :
Reed-Solomon codes; combined source-channel coding; error correction codes; forward error correction; least mean squares methods; rate distortion theory; video coding; visual communication; 2D SPIHT algorithm; 3D SPIHT algorithm; BSC; D-R estimator; FEC; MSE; RS codes; Reed Solomon codes; binary symmetric channel; channel code rate; distortion rate estimator; equal error protection; forward error correction; mean square error; mean square error minimization; optimal EEP; optimal UEP; optimal error protection; performance gain; real time image transmission; source rate; unequal error protection; video transmission; Algorithm design and analysis; Analytical models; Error analysis; Error correction codes; Forward error correction; Mean square error methods; Performance gain; Protection; Rate distortion theory; Reed-Solomon codes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech, and Signal Processing, 2004. Proceedings. (ICASSP '04). IEEE International Conference on
ISSN :
1520-6149
Print_ISBN :
0-7803-8484-9
Type :
conf
DOI :
10.1109/ICASSP.2004.1326904
Filename :
1326904
Link To Document :
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