Title :
Sast digital image stabilization using one bit transform based sub-image motion estimation
Author :
Yeni, A. Aysun ; Erturk, S.
Author_Institution :
Dept. of Electron. & Telecommun. Eng., Kocaeli Univ., Turkey
Abstract :
This paper presents a fast image sequence stabilization system that uses one bit transform (IBT) matching based global motion estimation and Kalman filtering based global motion correction. In order to facilitate a fast motion estimation process, image frames are initially converted into a single bit-plane representation using the IBT, and then motion vectors are evaluated matching the IBTs of two consecutive frames using Boolean operations. Because a binary representation is established, the computational complexity of motion estimation is significantly reduced providing a proportionate reduction in power consumption of custom hardware. The global motion vector is computed using local motion vectors of sub-image blocks to further increase the motion estimation speed. For the motion correction part, global motion vectors are accumulated to yield absolute frame displacements and Kalman filtering is employed to achieve stabilization.
Keywords :
Boolean functions; Kalman filters; computational complexity; filtering theory; image matching; image representation; image sequences; motion estimation; stability; transforms; Boolean operations; Kalman filtering; binary representation; computational complexity; fast digital image stabilization; image frames; image sequence stabilization system; motion vectors; one bit transform matching; single bit-plane representation; sub-image motion estimation; Computational complexity; Digital images; Energy consumption; Filtering; Hardware; Image converters; Image sequences; Kalman filters; Matched filters; Motion estimation;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2005.1510503