An Adaptive Fast Image Restoration Filter for Reducing Blocking Artifacts in the Compressed Image

압축 영상의 블록화 제거를 위한 적응적 고속 영상 복원 필터

  • 백종호 (중앙대학교 공과대학 전기공학과) ;
  • 이형호 (중앙대학교 공과대학 전자공학과) ;
  • 백준기 (중앙대학교 공과대학 전자공학과) ;
  • 윈치선 (동국대학교 공과대학 전자공학과)
  • Published : 1996.06.01

Abstract

In this paper we propose an adaptive fast image restoration filter, which is suitable for reducing the blocking artifacts in the compressed image in real-time. The proposed restoration filter is based on the observation that quantization operation in a series of coding process is a nonlinear and many-to-one mapping operator. And then we propose an approximated version of constrained optimization technique as a restoration process for removing the nonlinear and space varying degradation operator. We also propose a novel block classification method for adaptively choosing the direction of a highpass filter, which serves as a constraint in the optimization process. The proposed classification method adopts the bias-corrected maximized likelihood, which is used to determine the number of regions in the image for the unsupervised segmentation. The proposed restoration filter can be realized either in the discrete Fourier transform domain or in the spatial domain in the form of a truncated finite impulse response (FIR) filter structure for real-time processing. In order to demonstrate the validity of the proposed restoration filter experimental results will be shown.

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