Comparative Study and Hardware Implementation of Various Cryptographic Algorithms
DOI:
https://doi.org/10.18486/ijcsnt/6.3.083Keywords:
Symmetric Key, Asymmetric Key, Hashing, CPU Time, FrequencyAbstract
As computing power is increasing by the day, there is a constant threat which is imposed on the security of the digital data. Over the years, either symmetric key, public key or hashing algorithms have been designed using the popular tools and technique for security purpose. Various algorithms have been studied and implemented. MD-5, SHA is used for hashing the message, RSA as signing algorithm and AES and DES for encryption of the overall message. The optimization of the algorithms will provide us with descent throughput. The comparative analysis of the algorithms has been done on various factors.
References
D. Narh Amanor, C. Paar, J. Pelzl, V. Bunimov and M. Schimmler, “Efficient hardware architectures for modular multiplication on FPGAs,” Field Programmable Logic and Applications, pp. 539–542, 2005. DOI: https://doi.org/10.1109/FPL.2005.1515780
Vivek Kumar, Ashish Joshi and Banit Negi, “FPGA-based Hardware Architecture of ElGamal Encryption Using Carry Save Adder,” International Journal of Advanced Research in Computer Science and Software Engineering, vol. 4, no. 2, February 2014. ISSN: 2277-128X.
Samir Palnitkar, Verilog HDL: A Guide to Digital Design and Synthesis. Publisher: Prentice Hall PTR. ISBN: 0-13-044911-3.
Rivest R., Shamir A. and Adleman L., “A Method for Obtaining Digital Signatures and Public Key Cryptosystems,” Communications of the ACM, 1978. DOI: https://doi.org/10.21236/ADA606588
Stallings W., Cryptography and Network Security: Principles and Practices, 2003.
Burnett S. and Paine S., RSA Security’s Official Guide to Cryptography. McGraw-Hill, 2001.
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Prashant Barthwal, Swati Sharma, Vivek Kumar

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.