SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION
Abstract & Details
Research Area
Computer Science and Engineering
Keywords
micropayments
protocols
cybercrime
fraud-resilience.
Abstract
EMV card data theft is one of the earliest forms of cybercrime. Attackers often aim at stealing such customer data by targeting point of sale(POS) system. PoS is a combination of software and hardware that allows merchants to take transactions. Modern PoS systems are well equipped with the card reader and running specialized software. Customer and vendor are persistently or intermittently disconnected from the network, no secure online payment is possible. This paper describes PUF, a secure offline micropayments solution that is resilient to PoS breaches. This solution improves the flexibility and security.
License
This work is licensed under a Creative
Commons
Attribution-ShareAlike 4.0 International License.
Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Mareeswari. R | Prince shri venkateshwara padmavathy engineering college |
| 2 | Gayathri .D | Prince shri venkateshwara padmavathy engineering college |
| 3 | Vanitha .D | Prince shri venkateshwara padmavathy engineering college |
| 4 | Kapilavani .R .K | Prince Dr. K. Vasudevan college of engineering and technology |
How to Cite
Use the following formats to cite this article in your research.
APA Style
R, Mareeswari., .D, Gayathri, .D, Vanitha, & .K, Kapilavani .R (2017). SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION. International Journal of Advance Research and Innovative Ideas In Education, 3(1), 1534-1540.
MLA Style
R, Mareeswari., et al. "SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION." International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 1, 2017, pp. 1534-1540.
IEEE Style
Mareeswari. R, Gayathri .D, Vanitha .D, and Kapilavani .R .K, "SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION," International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 1, pp. 1534-1540, 2017.
Vancouver Style
R Mareeswari., .D Gayathri, .D Vanitha, .K Kapilavani .R. SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION. International Journal of Advance Research and Innovative Ideas In Education. 2017;3(1):1534-1540.
Harvard Style
R, Mareeswari., .D, Gayathri, .D, Vanitha, & .K, Kapilavani .R (2017) 'SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION', International Journal of Advance Research and Innovative Ideas In Education, 3(1), pp. 1534-1540.
Chicago Style
R, Mareeswari., et al. "SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION." International Journal of Advance Research and Innovative Ideas In Education 3, no. 1 (2017): 1534-1540.
Turabian Style
R, Mareeswari., et al. "SECURE MICROPAYMENTS USING PHYSICAL UNCLONABLE FUNCTION." International Journal of Advance Research and Innovative Ideas In Education 3, no. 1 (2017): 1534-1540.
Related Research
CYBERSECURITY WITH AI
PDF Unavailable
DESIGN AND IMPLEMENTATION OF A SECURE IMAGE STEGANOGRAPHY SYSTEM USING LSB AND CRYPTOGRAPHY
PDF Unavailable
A NOVEL HYBRID IMAGE STEGANOGRAPHY TECHNIQUE BASED ON LSB AND CRYPTOGRAPHIC SECURITY
PDF Unavailable
BioPrint AI: An Intelligent Deep Learning and Computer Vision Based Blood Group Identification System Using Fingerprint Patterns
PDF Unavailable
AnimalAid AI: A Deep Learning Powered Early Warning System for Detecting Skin Infections and Diseases in Stray Dogs
PDF Unavailable
LiverCare AI: Intelligent Medical Imaging Platform for Liver Tumor Detection and Clinical Guidance
PDF Unavailable