Title :
FBFET: Fuzzy based fingerprint enhancement technique based on adaptive thresholding
Author :
Selvi, M. ; George, A.
Author_Institution :
Aloy Labs., Bangalore, India
Abstract :
Fingerprint image enhancement plays a vital role in fingerprint recognition process which is one of the commonly used biometrics traits. In fingerprint recognition, the initial process is enhancement. An efficient enhancement process will give high accuracy in human authentication. The quality of the fingerprint image is more important for increasing the performance of the recognition system. Our proposed methodology is designed to enhance the fingerprint image, i.e. reproduce the noise free image. The proposed method is designed to identify the noise pixel area and enhance that portion alone by using Fuzzy based filtering technique and adaptive thresholding. The proposed technique comprises of 4 stages such as 1) preprocessing 2) Fuzzy based filtering 3) adaptive thresholding 4) Morphological operation. The experimentation is done by using FVC2002 database and we obtained better PSNR when compared to the existing filtering techniques.
Keywords :
filtering theory; fingerprint identification; fuzzy set theory; image enhancement; image segmentation; message authentication; FBFET; FVC2002 database; PSNR; adaptive thresholding; biometrics; fingerprint image enhancement; fingerprint recognition; fuzzy based filtering technique; fuzzy based fingerprint enhancement technique; human authentication; morphological operation; noise free image; noise pixel area; Databases; Filtering; Fingerprint recognition; Image matching; Noise measurement; PSNR; Adaptive thresholding; Fingerprint Enhancement; Fuzzy logic; Gabor Filtering;
Conference_Titel :
Computing, Communications and Networking Technologies (ICCCNT),2013 Fourth International Conference on
Conference_Location :
Tiruchengode
Print_ISBN :
978-1-4799-3925-1
DOI :
10.1109/ICCCNT.2013.6726776