The Video Spatial Error Concealment Algorithm Using Separately-Directional Interpolation Technique

被引:0
作者
Yu-Hsuan Lee
Cheng-Hung Lin
Chao-Chyun Chen
Shu-Yen Lin
Bo-Siang Huang
机构
[1] Yuan-Ze University,Department of Electrical Engineering and Innovation Center for Big Data and Digital Convergence
来源
Journal of Signal Processing Systems | 2017年 / 88卷
关键词
Video coding; Error propagation; Error concealment; Interpolation;
D O I
暂无
中图分类号
学科分类号
摘要
The multimedia communication plays an important role in our daily life. This also motivates the evolution of communication techniques, and improves the transmission bandwidth. Certainly, the high-quality video-delivering is also accompanied with this trend. Unfortunately, the video bitstream is quite sensitive to transmission error causing the error propagation that can seriously degrade the visual quality. In this paper, the spatial error concealment (SEC) using separately-directional interpolation (SDI) algorithm is proposed to alleviate error propagation. The SDI consists of four procedures: corrupted block partition, edge detection, bilinear interpolation (BI)/ directional interpolation (DI) adoption, and interpolation. The SDI algorithm divides the corrupted block into finer sub-blocks. Each sub-block exhibits its own texture complexity, and thereby the recovering method is also adaptive to the texture complexity in SDI. The SDI algorithm can adaptively recover the finer sub-block by BI and DI, according to the feature of texture complexity. The experiment result reveals that the the proposed SDI technique can achieve a better performance compared with sophisticated SEC algorithms dedicated for spatial-interpolation.
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页码:13 / 27
页数:14
相关论文
共 44 条
[1]  
Astely D(2009)LTE: The evolution of mobile broadband IEEE Communication Magazine 47 44-51
[2]  
Dahlman E(2010)MAX or LTE: Who will lead the broadband mobile internet? IT Professional 12 26-32
[3]  
Furuskar A(2010)LTE-Advanced: Next-generation wireless broadband technology IEEE Transactions Wireless Communications 17 10-22
[4]  
Jading Y(2012)Overview of the high efficiency video coding (HEVC) standard IEEE Transactions Circuits Systems Video Technology 22 1649-1668
[5]  
Lindstrom M(2000)A cell-loss concealment technique for MPEG-2 coded video IEEE Transactions on Circuits Systems Video Technology 10 659-665
[6]  
Parkvall S(2006)Enhanced Error concealment with mode selection IEEE Transactions on Circuits Systems Video Technology 16 960-973
[7]  
Abichar Z(2005)Temporal error concealment algorithm by recursive block-matching principle IEEE Transactions on Circuits Systems Video Technology 15 1385-1393
[8]  
Chang JM(2007)VLSI Implementation of High-Performance error concealment processor for TV broadcasting IEEE Transactions on Circuits Systems Video Technology 17 1054-1064
[9]  
Hsu C-Y(2010)Efficient spatial-temporal error concealment algorithm and hardware architecture design for h.264/AVC IEEE Transactions on Circuits Systems Video Technology 20 1409-1422
[10]  
Ghosh A(2011)Algorithm and architecture design of image inpainting engine for video error concealment applications IEEE Transactions on Circuits Systems Video Technology 21 792-803