Knapsack-based Elliptic Curve Cryptography using stern series for digital signature authentication

Author(s):  
K Nivethaa Shree ◽  
Latha Parthiban
2010 ◽  
Vol 34-35 ◽  
pp. 1024-1027 ◽  
Author(s):  
Ai Wan Fan ◽  
Shu Xi Lu

In elliptic curve cryptography, reverse-mode operation is the impact on the efficiency of digital signature one of the most important factor. Analysis of the limited domain of elliptic curve digital signature process, to prove the correctness of the algorithm, a non-mode based on the inverse operation of the elliptic curve digital signature algorithm, the algorithm does not reduce the security on the basis of improved algorithms Efficiency.


2016 ◽  
Vol 15 (8) ◽  
pp. 6976-6978
Author(s):  
Anurag Singh Bhadoria ◽  
Anurag Jain

Authentication and verification of digital data is important phase in internet based transaction and data access. For the authentication and verification used digital signature operation. For the operation of digital signature various cryptography techniques is used. The strength of cryptography technique measures the strength of digital signature. For the strength improvement various cryptography techniques is used such as RSA, ECC and some other bit level cryptography technique. In this paper present the review of digital signature technique basically based on elliptic curve cryptography technique. The elliptic curve cryptography technique is much stronger than other cryptography technique. 


2010 ◽  
Vol 3 (1) ◽  
pp. 75
Author(s):  
D. B. Ojha ◽  
Ms. Shree ◽  
A. Dwivedi ◽  
A. Mishra

We established a new approach for cryptographic digital signature scheme based on Mandelbrot and Julia fractal sets. We have embedded the features of ECC (elliptic curve cryptography) to the digital signature scheme based on Mandelbrot and Julia fractal sets. We offered a digital signature that has advantages of both the fractal based digital signature as well as of elliptic curve digital signature.Keywords: Fractal; ECC; Digital signature.© 2011 JSR Publications. ISSN: 2070-0237 (Print); 2070-0245 (Online). All rights reserved.doi:10.3329/jsr.v3i1.4694                 J. Sci. Res. 3 (1), 75-79 (2011)


2021 ◽  
Vol 10 (10) ◽  
pp. 25408-25412
Author(s):  
Dr. Sivarama Prasad Kanakam

Computerized Currency is an electronic kind of cash. These days, everything is developing into digitization measure. This contains all properties like actual cash and furthermore permits prompt trades which will be reliably executed across the world while partner with upheld contraptions and organizations. In this paper we presented the SHA3-512 bit hashing algorithm and ECDSA algorithm for generation of digital signature. The Elliptic curve cryptography (ECC) is one of the greater promising technology on this area. ECC-enabled TLS is quicker and greater scalable on our servers and presents the equal or higher protection than the default cryptography in use at the web. one of the elliptic curve algorithm, the elliptic curve virtual signature algorithm (ECDSA), may be used to enhance overall performance at the Internet. CloudFlare now helps custom ECDSA certificate for our clients and that’s true for all people the use of the Internet.


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