DocumentCode :
238613
Title :
Mixed random 128 bit key using finger print features and binding key for AES algorithm
Author :
Priya, S. Sridevi Sathya ; Karthigaikumar, P. ; Siva Mangai, N.M.
Author_Institution :
Dept. of Electron. & Commun. Eng., Karunya Univ., Coimbatore, India
fYear :
2014
fDate :
27-29 Nov. 2014
Firstpage :
1226
Lastpage :
1230
Abstract :
In the present age, cryptography is being used extensively for protecting information. The process of protecting information by encrypting it into an unreadable format is called cipher text. Only those who possess the secret key can decrypt the encrypted data into plain text. Remembering the key is a very difficult task, due to the usage of 128,192&256 key bits. To solve this issue, biometrics can be used as a key. In this paper a mixed key is generated from the fingerprint and binding key. This increases the complexity of guessing and cracking a cryptographic key. Mixed key will provide good opinion for information security. This combination of biometric key and binding key is done by mixing biometric templates with random number keys. This combination is done by using fuzzy commitment scheme [8]. Mixed key increases the randomness of the key. This implementation is done using MATLAB 7.7.0. Fingerprint images used in the experiments were obtained from the National Institute of Standards (NIST) fingerprint data set. Brute force attack is the main cause for information theft in encryption algorithm. This attack is a dictionary attack mainly depends on the randomness of the key. Random keys are less affected by this attack. The randomness of the generated mixed key is tested using randomness tests. The generated mixed key randomness is compared with the biometric key which is generated from the finger print. The experimental result shows that average of 50% randomness is increased in mixed key when compare to biometric key.
Keywords :
cryptography; feature extraction; fingerprint identification; AES algorithm; MATLAB 7.7.0; NIST fingerprint data set; National Institute of Standards; binding key; biometric key; biometrics; brute force attack; cipher text; cryptographic key; cryptography; dictionary attack; encryption algorithm; finger print features; fingerprint images; fuzzy commitment scheme; information security; information theft; mixed random 128 bit key; mixing biometric templates; random number keys; randomness tests; unreadable format; Biometrics (access control); Cryptography; Feature extraction; Fingerprint recognition; Fingers; Image matching; Biometrickey; Mixed Key; Randomness test;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Contemporary Computing and Informatics (IC3I), 2014 International Conference on
Conference_Location :
Mysore
Type :
conf
DOI :
10.1109/IC3I.2014.7019656
Filename :
7019656
Link To Document :
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