Title :
An optical flow based motion compensation algorithm for very low bit-rate video coding
Author :
Lin, Shu ; Shi, Yun Q. ; Zhang, Ya-Qin
Author_Institution :
Dept. of Electr. & Comput. Eng., New Jersey Inst. of Technol., Newark, NJ, USA
Abstract :
We propose an efficient compression algorithm for very low bit-rate video applications. The algorithm is based on (1) optical-flow motion estimation to achieve more accurate motion prediction fields; (2) DCT-coding of the motion vectors from the optical-flow estimation to further reduce the motion overheads; and (3) a region adaptive threshold technique to match optical flow motion prediction and minimize the residual errors. Unlike the classic block-matching based discrete cosine transformation (DCT) video coding schemes in MPEG 1/2 and H.261/3, the proposed algorithm uses optical flow for motion compensation and the DCT is applied to the optical flow field instead of predictive errors. Thresholding techniques are used to treat different regions to complement the optical flow technique and to efficiently code residual data. While maintaining comparable peak signal to noise ratio (PSNR) and computational complexity with that of ITU-T H.263/TMN5, the reconstructed video frames of the proposed coder are free of annoying blocking artifacts, and hence visually much more pleasant
Keywords :
adaptive codes; channel capacity; coding errors; computational complexity; data compression; discrete cosine transforms; image reconstruction; image segmentation; image sequences; motion compensation; motion estimation; prediction theory; transform coding; video coding; DCT coding; ITU-T H.263/TMN5; PSNR; adaptive coding; compression algorithm; computational complexity; discrete cosine transform; image regions; motion compensation algorithm; motion overheads reduction; motion prediction; motion prediction fields; motion vectors; optical flow; peak signal to noise ratio; reconstructed video frame; region adaptive threshold technique; residual errors; thresholding techniques; very low bit rate video coding; Adaptive optics; Compression algorithms; Discrete cosine transforms; Image motion analysis; Motion compensation; Motion estimation; Optical noise; PSNR; Video coding; Video compression;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1997. ICASSP-97., 1997 IEEE International Conference on
Print_ISBN :
0-8186-7919-0
DOI :
10.1109/ICASSP.1997.595388