Home / Current Issue / Paper 1703661
Combinatorial Asymmetric Key Cryptosystem and Hash Based Multifactor Authentication Techniques for Secured Data Communication in WSN
Subject area: Science,Engineering and Technology · Area of research: Computer Networks
Abstract
Wireless sensor network security pulls in considerations of numerous specialists around the globe. Security is utilized with attributes of authentication, uprightness, protection, nonrepudiation and privacy. The security benefits in WSN need to ensure the data imparted over network and assets from the assaults. Security and authentication during information communication are testing one in WSN. For secure communication in WSN, cryptographic and steganographic techniques are utilized. The information are sent or gotten to by any hub in network after authentication measure to keep from unapproved clients to get to the data. Our exploration clarifies Investigation on Combinatorial Asymmetric Key Cryptosystem and Hash Based Multifactor Authentication Techniques.
Keywords
Wireless sensor network, Asymmetric Key Cryptosystem, Data Communication, Blum-Goldwasser encryption algorithm.
References
[1] Arun Kejariwal, “ Cryptic primes”, IEEE Potentials, pp. 43-45, Feb./Mar. 2004, IEEE.
[2] Minoru Kuribayashi and Hatsukazu Tanaka, “Fingerprinting Protocol for Images Based on Additive Homomorphic Property”, IEEE Transactions on Image Processing, vol. 14, no. 12, pp. 2129-2139, Dec. 2005, IEEE.
[3] Subramania Sudharsanan, ” Shared Key Encryption of JPEG Color Images”, IEEE Transactions on Consumer Electronics, vol. 51, no. 4, pp. 1204-1211, Nov. 2005, IEEE.
[4] G. Boato, N. Conci, and V. Conotter, F.G.B. De Natale, and C. Fontanari, “Multimedia asymmetric watermarking and encryption”, Electronics Letters, vol. 44 no. 9, April 2008, IEEE.
[5] K. HimaBindu, Ch. LavanyaAishani, M.Kamalakar, “A Secure Key Exchange Scheme in Wireless Sensor Networks Using Diffie Hellman,” International Journal of Innovative Research in Computer and Communication Engineering, vol. 4, no 9, pp. 16338-16343, Sept 2016.
[6] D. Djenouri And L. Khelladi, A. NadjibBadache, “A Survey Of Security Issues In Mobile Ad Hoc And Sensor Networks,” IEEE Communications Surveys & Tutorials, vol. 7, no. 4, pp.2-28, Fourth Quarter 2005.
[7] MohitSaxena, “Security In Wireless Sensor Networks - A Layer Based Classification,” Cerias Tech Report 2007-04.
[8] Hirsch, Frederick J. "SSL/TLS Strong Encryption: An Introduction". Apache HTTP Server. Retrieved 17 April 2013.. The first two sections contain a very good introduction to public-key cryptography.
[9] Ferguson, Niels; Schneier, Bruce (2003). Practical Cryptography. Wiley. ISBN 0-471-22357-3.
[10] Katz, Jon; Lindell, Y. (2007). Introduction to Modern Cryptography. CRC Press. ISBN 978-1-58488-551-1.
[11] Kavitha T, Sridharan D. Hybrid design of scalable key distribution for wireless sensor networks. International Journal of Engineering and Technology 2010; 2 (2): 136–141.
[12] Chong C, Kumar S. Sensor networks: evolution, opportunities, and challenges. Proceedings of the IEEE 2003; 91(8): 1247–1256.
[13] Wang Y, Attebury G, Ramamurthy B. A survey of security issues in wireless sensor networks. IEEE Communications Surveys & Tutorials 2006; 8: 2–23.
[14] M. L. Das, “Two-factor user authentication in wireless sensor networks,” IEEE Transactions on Wireless Communications, vol. 8, no. 3, pp. 1086–1090, 2009.
[15] L.-P. Zhang and Y. Wang, “An ID-based authenticated key agreement protocol for wireless sensor networks,” Journal of Communications, vol. 5, no. 8, pp. 620–626, 2010.
[16] https://doc.sagemath.org/html/en/reference/cryptography/sage/crypto/public_key/blum_goldwasser.html.
How to cite this paper
@article{1703661,
author = {Venkatachalam C, Dr. A. Suresh},
title = {Combinatorial Asymmetric Key Cryptosystem and Hash Based Multifactor Authentication Techniques for Secured Data Communication in WSN},
journal = {Iconic Research And Engineering Journals},
year = {2022},
volume = {6},
number = {1},
pages = {382-389},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1703661.pdf},
abstract = {Wireless sensor network security pulls in considerations of numerous specialists around the globe. Security is utilized with attributes of authentication, uprightness, protection, nonrepudiation and privacy. The security benefits in WSN need to ensure the data imparted over network and assets from the assaults. Security and authentication during information communication are testing one in WSN. For secure communication in WSN, cryptographic and steganographic techniques are utilized. The information are sent or gotten to by any hub in network after authentication measure to keep from unapproved clients to get to the data. Our exploration clarifies Investigation on Combinatorial Asymmetric Key Cryptosystem and Hash Based Multifactor Authentication Techniques.},
keywords = {Wireless sensor network, Asymmetric Key Cryptosystem, Data Communication, Blum-Goldwasser encryption algorithm.},
month = {July},
}