DocumentCode
1766122
Title
Hill-Climbing Attacks on Multibiometrics Recognition Systems
Author
Maiorana, Emanuele ; Hine, Gabriel Emile ; Campisi, Patrizio
Author_Institution
Dept. of Eng., Roma Tre Univ., Rome, Italy
Volume
10
Issue
5
fYear
2015
fDate
42125
Firstpage
900
Lastpage
915
Abstract
Biometric recognition systems, despite the advantages provided with respect to traditional authentication methods, have some peculiar weaknesses which may allow an attacker being falsely recognized or accessing users´ personal data. Among such vulnerabilities, in this paper, we speculate on the hill-climbing attack, i.e., the possibility for an attacker to exploit the scores produced by the matcher with the goal of generating synthetic biometric data, which could allow a false acceptance. More in detail, we focus on multibiometrics systems and investigate about the robustness of different system architectures, both parallel and serial fusion schemes, against the hill-climbing attack. Nonuniform quantization is also evaluated as a possible countermeasure for limiting the effectiveness of the considered attacks in terms of recognition success rate and average number of required attempts without affecting the recognition performance.
Keywords
biometrics (access control); image fusion; image matching; quantisation (signal); hill-climbing attacks; matching scores; multibiometric recognition Systems; nonuniform quantization; parallel fusion scheme; recognition success rate; serial fusion scheme; synthetic biometric data generation; system architectures; Accuracy; Feature extraction; Fingerprint recognition; Linear programming; Robustness; Security; Vectors; Biometrics Protection; Electroencephalography; Fingerprint; Hill-Climbing Attacks; Hill-climbing attacks; Multi-Biometrics Recognition Systems; On-line Signature; biometrics protection; electroencephalography; fingerprint; multibiometrics recognition systems; on-line signature;
fLanguage
English
Journal_Title
Information Forensics and Security, IEEE Transactions on
Publisher
ieee
ISSN
1556-6013
Type
jour
DOI
10.1109/TIFS.2014.2384735
Filename
6994220
Link To Document