Title :
A MRF model based scheme for accurate detection and adaptive interpolation of missing data in nightly corrupted image sequences
Author :
Kalra, Sandeep ; Krishnan, D. ; Chong, M.N.
Author_Institution :
Center for Signal Process., Nanyang Technol. Inst., Singapore
Abstract :
This paper proposes a robust spatial-temporal MRF model based scheme for aggressive detection and accurate interpolation of missing data (blotches) in highly corrupted image sequences. The blotches in noise-corrupted image sequences exhibit a temporal discontinuity characteristic, which is used for the detection of blotches. The MRF model addresses the problem of incorrect detection due to poor motion compensation at moving edges, by incorporating a moving-edge detector into a priori model. In highly corrupted image sequences where an aggressive detector is needed, the detection field can be interpreted as three main classes. This classification allows for effective noise-removal. These regions are blotches that are to be interpolated: (a) with the existing motion vector field, (b) requiring motion vector correction, and other (c) falsely detected regions. This results in a novel scheme that effectively subdues noise without corrupting other areas of heavily distorted image sequences.
Keywords :
image classification; image sequences; interpolation; motion compensation; MRF model based scheme; a priori model; accurate detection; accurate interpolation; adaptive interpolation; aggressive detector; corrupted image sequences; highly corrupted image sequences; image sequences; motion compensation; motion vector correction; motion vector field; nightly corrupted image sequences; temporal discontinuity characteristic; Adaptive signal detection; Detectors; Image edge detection; Image sequences; Interpolation; Lattices; Motion compensation; Motion detection; Motion pictures; Object detection;
Conference_Titel :
Image Processing, 1999. ICIP 99. Proceedings. 1999 International Conference on
Conference_Location :
Kobe
Print_ISBN :
0-7803-5467-2
DOI :
10.1109/ICIP.1999.823026