DocumentCode
2615397
Title
A novel selective coding scheme based on layered structure
Author
Kim, Chan-Sik ; Kim, Wook-Joong ; Kim, Seong-Due
Author_Institution
DSP, Micro Div., Samsung Electron. Co., Kyunggi-Do, South Korea
Volume
3
fYear
1996
fDate
16-19 Sep 1996
Firstpage
355
Abstract
In this paper, we propose a novel selective coding scheme based on layered structure. The scheme has 4 functional blocks that are target extraction, first layer coder for background region (FLC), second layer coder for target region (SLC) and buffer controller. For the target extraction process, we use motion vector grouping and change detection techniques, and increase the extraction accuracy of the target region by using a global motion compensation. The FLC and SLC are coders based on H.261 structure and generate low resolution background and high resolution target image, respectively. Simulation results show that the average PSNRs are obtained about 45.05 dB and 26.02 dB for target and background region respectively. Also the average number of bits generated in a frame is about 4780 bits: 2.16 bits and 41.84 bits per block are assigned to background and target region, respectively
Keywords
feature extraction; image coding; image resolution; image segmentation; image sequences; motion compensation; motion estimation; video coding; H.261 structure; PSNR; background region; buffer controller; change detection technique; first layer coder; global motion compensation; high resolution target image; layered structure; low resolution background; motion vector grouping; second layer coder; selective coding scheme; simulation results; target extraction; target region; Bit rate; Degradation; Digital signal processing; Image resolution; Image segmentation; Layout; Motion compensation; Quantization; Size control; Videoconference;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing, 1996. Proceedings., International Conference on
Conference_Location
Lausanne
Print_ISBN
0-7803-3259-8
Type
conf
DOI
10.1109/ICIP.1996.560504
Filename
560504
Link To Document