2019Unpublished venueRequires access

Securing Document by Digital Signature through RSA and Elliptic Curve Cryptosystems

Nelson Josias Gbètoho Saho, Eugène C. Ezin

Open publisher page 9 citations

Abstract

Electronic document authentication is becoming a major concern due to the huge data passing through computer networks, especially Internet. The asymmetric cryptography, the cryptography based on elliptic curves and more recently digital signature appear as credible alternatives to guarantee the authenticity, non forgery, non reuse, inalterability and irrevocability of electronic documents. In this paper, we evaluated the performance of document security systems by the digital signature. We perform tests that showed elliptic curve cryptography is more advantageous in terms of memory consumption and computing speed over RSA cryptosystem. The simulation result showed that elliptic curve cryptography is a preferred choice over RSA cryptosystem and allows its use in embedded systems equiped with very limited memory and computing power.

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What this paper is about

Electronic document authentication is becoming a major concern due to the huge data passing through computer networks, especially Internet. The asymmetric cryptography, the cryptography based on elliptic curves and more recently digital signature appear as credible alternatives to guarantee the authenticity, non forgery, non reuse, inalterability and irrevocability of electronic documents. In this paper, we evaluated the performance of document security systems by the digital signature. We perform tests that showed elliptic curve cryptography is more advantageous in terms of memory consumption and computing speed over RSA cryptosystem. The simulation result showed that elliptic curve cryptography is a preferred choice over RSA cryptosystem and allows its use in embedded systems equiped with very limited memory and computing power.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Electronic document authentication is becoming a major concern due to the huge data passing through computer networks, especially Internet. The asymmetric cryptography, the cryptography based on elliptic curves and more recently digital signature appear as credible alternatives to guarantee the authenticity, non forgery, non reuse, inalterability and irrevocability of electronic documents. In this paper, we evaluated the performance of document security systems by the digital signature. We perform tests that showed elliptic curve cryptography is more advantageous in terms of memory consumption and computing speed over RSA cryptosystem. The simulation result showed that elliptic curve cryptography is a preferred choice over RSA cryptosystem and allows its use in embedded systems equiped with very limited memory and computing power.

Key concepts: Elliptic Curve Digital Signature Algorithm, Elliptic curve cryptography, Digital signature, Computer science, Cryptography, Cryptosystem, Public-key cryptography, Curve25519

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