Title :
Non-invertible geometrical transformation for fingerprint minutiae template protection
Author :
Yang, Bian ; Busch, Christoph ; Bours, Patrick ; Gafurov, Davrondzhon
Author_Institution :
Norwegian Inf. Security Lab., Gjovik Univ. Coll., Gjovik, Norway
Abstract :
We propose a non-invertible geometrical transformation to protect minutiae-based fingerprint templates. This algorithm combines parameter-controlled linear and non-linear geometrical transformations to map an original minutiae-based template to a protected coordinate-based template in a highly non-invertible way. The protected template is easy to revoke and renew by changing the transformation parameters. Reference points based distance-preserved linear transformation is employed to preserve biometric performance, while cropping and superimposition based non-linear transformation is employed to achieve high non-invertibility which even permits all transformation parameters public in some cases. The high non-invertibiliy also enhances unlinkability among different templates for the same original fingerprint minutiae template against the key-inversion attack which undermines existing algorithms such as fuzzy commitment and fuzzy vault.
Keywords :
fingerprint identification; biometric performance; distance-preserved linear transformation; fingerprint minutiae template protection; key inversion attack; non invertible geometrical transformation; Computational complexity; Databases; Economic indicators; Fingerprint recognition; Fingers; Probes; Security;
Conference_Titel :
Security and Communication Networks (IWSCN), 2009 Proceedings of the 1st International Workshop on
Conference_Location :
Trondheim
Print_ISBN :
978-1-61284-168-7
Electronic_ISBN :
978-82-997105-1-0