Open AccessJournal Article
An Efficient Multi-directional Interpolation Algorithm For Spatial Error Concealment
TL;DR: In this article, an efficient multi-directional interpolation algorithm is presented for spatial error concealment, where the significant edges of missing macroblock are only estimated using a directional edge analysis on the correctly received neighboring blocks.
read more
Abstract: In real-time video applications, error concealment is used to conceal the corrupted parts of the video sequence without retransmission. In this paper, an efficient multi-directional interpolation algorithm is presented for spatial error concealment. First, the significant edges of missing macroblock are only estimated using a directional edge analysis on the correctly received neighboring blocks. Second, an approximation for each missing pixel is computed along each significant edge. For two boundary pixels along each significant edge direction, the sum of magnitudes of gradients, which has the same quantized direction level as the edge direction, are computed on seven neighboring pixels. Finally, a weighted average of multiple approximations is computed using the sum of gradient magnitudes as weighting factors. Compared with the previous methods using multi-directional interpolation, experimental results show that the proposed method gives better reconstruction quality in terms of objective and subjective evaluations.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
References
The error concealment feature in the H.26L test model
Ye-Kui Wang,Miska Hannuksela,V. Varsa,Ari Hourunranta,Moncef Gabbouj +4 more
- 10 Dec 2002
TL;DR: The specific concealment strategy and some special methods, including handling of B-pictures, multiple reference frames and entire frame losses, are described and both subjective and objective results are given based on simulations under Internet conditions.