Title :
Hybrid Error Concealment Using Linear Interpolation
Author :
Chen, Bor Nang ; Lin, Yinyi
Author_Institution :
Dept. of Commun. Eng., Nat. Central Univ., Chung-li
fDate :
Oct. 18 2006-Sept. 20 2006
Abstract :
In this paper we extend the previous work (B.N. Chen and Y. Lin, 2006) and propose a hybrid error concealment algorithm using linear interpolation for error-prone video transmission channel. In the proposed hybrid algorithm, the selective motion field interpolation (SMFI) is first employed to conceal the erroneous macroblock. The spatial and temporal boundary-matched errors are then used to check whether the SMFI conceals the erroneous macroblock properly. If the temporally recovered macroblock is reconstructed incorrectly, the spatial error concealment using linear interpolation is employed to conceal the damaged macroblock instead of SMFI. The proposed hybrid algorithm employs the linear interpolation on both spatial and temporal error concealment and the computational complexity is reasonably low. It possesses benefit of easy implementation and can achieve better performance subjectively as well as objectively over other error concealment techniques. Simulation was conducted on the H.263 codec and the experimental results reveal that the proposed algorithm significantly outperforms other concealment techniques
Keywords :
interpolation; telecommunication channels; video coding; video communication; H.263 codec; error-prone video transmission channel; hybrid algorithm; hybrid error concealment; linear interpolation; selective motion field interpolation; spatial error concealment; temporal boundary-matched errors; Computational complexity; Computational modeling; Decoding; Error correction codes; Image restoration; Interpolation; Layout; Motion estimation; Vectors; Video sequences;
Conference_Titel :
Communications and Information Technologies, 2006. ISCIT '06. International Symposium on
Conference_Location :
Bangkok
Print_ISBN :
0-7803-9741-X
Electronic_ISBN :
0-7803-9741-X
DOI :
10.1109/ISCIT.2006.339912