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1.
Security enhanced CLS and CL-AS scheme without pairings for VANETs
Anjali Bansal, Saru Kumari, Nishant Doshi, Mohammed Amoon, Marko Hölbl, 2025, izvirni znanstveni članek

Opis: While vehicle ad-hoc networks (VANETs) have many advantages, they also present privacy and security concerns. Certificate management issue has been seen in traditional public key infrastructure based privacy preserving authentication schemes while key escrow problem exists in identity based privacy preserving authentication techniques. Also existing cryptographic techniques rely heavily on assumptions about tamper-proof equipment to ensure their security. A proposal has been made for a certificateless aggregate signature system for VANETs addressing these issue and was proved provably unforgeable against collusion attack. However we found that the proposed technique was insecure and cannot withstand collusion assault. Therefore, this paper presents an improved and secure certificateless aggregate signature technique for VANETs. We also illustrate the security & performance evaluation of our presented technique and based upon the hardness assumption of the elliptic curve discrete logarithm problem we have shown that the technique is safe against existential forgery on adaptive chosen message attack in the random oracle model. Also the presented technique has better efficiency compared to some recent existing authentication techniques.
Ključne besede: aggregate signature, certificateless public key cryptography, elliptic curve cryptosystem, vehicular ad hoc networks
Objavljeno v DKUM: 13.03.2025; Ogledov: 0; Prenosov: 4
.pdf Celotno besedilo (888,32 KB)
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2.
Signing blockchain transactions using qualified certificates
Muhamed Turkanović, Blaž Podgorelec, izvirni znanstveni članek

Opis: Blockchain technology is increasingly being considered among both private enterprises and public services. However, it poses a challenge with regard to aligning its identity management scheme with the Public Key Infrastructure and the Qualified Digital Certificates issued by Qualified Trust Service Providers. To solve this challenge, we will present a solution in the form of an architecture reference model, which enables enterprises and public services to leverage blockchain technology by integrating Qualified Electronic Signatures with blockchain transactions. The evaluation of the architecture reference model is provided through the design of a Blockchain-based Trusted Public Service and a use-case scenario example. The proposed architecture reference model is based on the CEF building blocks EBSI, eSignature, and eID compliant with eIDAS
Ključne besede: blockchain, computer architecture, distributed ladger, fabrics, elliptic curve cryptography, internet, law
Objavljeno v DKUM: 08.12.2022; Ogledov: 712; Prenosov: 180
.pdf Celotno besedilo (215,95 KB)
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