Title :
A fully parallel CMOS analog median filter
Author :
Díaz-Sánchez, Alejandro ; Ramírez-Angulo, Jaime ; Lopez-Martin, Antonio ; Sánchez-Sinencio, Edgar
Author_Institution :
Electron. Dept., Instituto Nacional de Astrofisica, Opt. y Electron., Puebla, Mexico
fDate :
3/1/2004 12:00:00 AM
Abstract :
A fully integrated CMOS implementation of a continuous-time analog median filter is presented. The median filter uses two compact analog circuits as building blocks to implement the variable delay and median detection. Median detectors are based on current saturating transconductance comparators, while the time delay is implemented using first-order all-pass filters. Both circuits allow modular expansion for the implementation of large median filter array processors. Based on these blocks, a new fast technique for parallel image processing is presented. It is shown that an image of 91×80 pixels can be processed in less than 8 μs using an array of median filter cells. Experimental results of a test chip prototype in 2-μm CMOS MOSIS technology are presented.
Keywords :
CMOS analogue integrated circuits; all-pass filters; analogue processing circuits; continuous time filters; delay circuits; image processing; median filters; parallel architectures; 8 mus; 80 pixels; 8720 pixels; 91 pixels; CMOS MOSIS; CMOS analog circuits; analog delay cells; array median filter cells; compact analog circuits; continuous-time analog median filter; first-order all-pass filters; integrated CMOS; median detection; median filter array processors; parallel image processing; test chip prototype; time delay; transconductance comparators; variable delay; Analog circuits; CMOS technology; Delay effects; Detectors; Filters; Image processing; Pixel; Prototypes; Testing; Transconductance;
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2003.822442