DocumentCode :
918896
Title :
Efficient auto-focus algorithm utilizing discrete difference equation prediction model for digital still cameras
Author :
Chen, Chih-Ming ; Hong, Chin-Ming ; Chuang, Han-Chun
Author_Institution :
Graduate Inst. of Libr., Inf. & Archival Studies, Nat. Chengchi Univ., Taipei
Volume :
52
Issue :
4
fYear :
2006
Firstpage :
1135
Lastpage :
1143
Abstract :
Most digital still cameras employ the passive auto-focus scheme to achieve these goals. Measuring the sharpness of an image using passive auto-focus is time-consuming, particularly for digital still cameras with mega-pixels resolutions. However, the auto-focus search algorithm for digital still cameras needs to be fast and real-time. This study presents an efficient real-lime auto-focus (AF) algorithm combining the discrete difference equation prediction model (DDEPM) and bisection search method for digital still cameras. The proposed auto-focus algorithm uses both the coarse search procedure with DDEPM and the fine search procedure with bisection search method to perform the auto-focus process for digital still cameras. The coarse search procedure utilizes the precise forecasting ability of the DDEPM model to determine the turning points of the focus value curve, thus skipping some unnecessary detection points on the focus value curve. This procedure can be used to move the lens quickly to the neighborhood region of the best-focused lens position during AF processes. After the coarse search is finished, the fine search procedure is used to find the best-focused lens position according to the coarse search result. The proposed scheme increases the auto-focus speed since it reduces the number of detection points required for the focus value curve when searching the neighboring region of the best-focused lens position, and also reduces the lens backlash times. The proposed algorithm is implemented herein on an HP digital camera including control software. The experimental results indicate that the proposed AF algorithm is very reliable and requires few focusing iterations
Keywords :
cameras; photographic lenses; search problems; self-focusing; auto-focus search algorithm; best-focused lens position; bisection search method; coarse search procedure; digital still cameras; discrete difference equation prediction model; focus value curve; image sharpness; lens backlash times; real-lime auto-focus algorithm; Difference equations; Digital cameras; Focusing; Image resolution; Lenses; Particle measurements; Predictive models; Search methods; Software algorithms; Turning;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/TCE.2006.273125
Filename :
4050036
Link To Document :
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