Error Concealment Using Intra-Mode Information Included in H.264/AVC-Coded Bitstream

  • Kim, Dong-Hyung (Broadcasting & Telecommunications Convergence Research Laboratory, ETRI) ;
  • Jeong, Se-Yoon (Broadcasting & Telecommunications Convergence Research Laboratory, ETRI) ;
  • Choi, Jin-Soo (Broadcasting & Telecommunications Convergence Research Laboratory, ETRI) ;
  • Jeon, Gwang-Gil (Department of Electronics Computer Engineering, Hanyang University) ;
  • Kim, Seung-Jong (Department of Computer Information, Hanyang Women's College) ;
  • Jeong, Je-Chang (Department of Electronics Computer Engineering, Hanyang University)
  • Received : 2008.04.02
  • Accepted : 2008.06.17
  • Published : 2008.08.30

Abstract

The H.264/AVC standard has adopted new coding tools such as intra-prediction, variable block size, motion estimation with quarter-pixel-accuracy, loop filter, and so on. The adoption of these tools enables an H.264/AVC-coded bitstream to have more information than was possible with previous standards. In this paper, we propose an effective spatial error concealment method with low complexity in H.264/AVC intra-frame. From information included in an H.264/AVC-coded bitstream, we use prediction modes of intra-blocks to recover a damaged block. This is because the prediction direction in each prediction mode is highly correlated to the edge direction. We first estimate the edge direction of a damaged block using the prediction modes of the intra-blocks adjacent to a damaged block and classify the area inside the damaged block into edge and flat areas. Our method then recovers pixel values in the edge area using edge-directed interpolation, and recovers pixel values in the flat area using weighted interpolation. Simulation results show that the proposed method yields better video quality than conventional approaches.

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