Vinod Kumar 0003

dblp:26/6904-3 · DBLP profile ↗
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8ranked-venue papers
3as first author
6since 2021 · last 2026
0000-0002-2939-1100ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 4 · 2 first-author · 4 since 2021Security and privacy · 3 · 1 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 A reliable and effective authentication mechanism for vehicular digital twin networks
Vinod Kumar 0003, Fauzia Hassan, Rabi Narayan Kar, Anil Kumar Nishad
J. Syst. Archit.1
2024 RSFVC: Robust Biometric-Based Secure Framework for Vehicular Cloud Networking
abstract
Vehicular cloud networking (VCN) is a new study area that combines vehicular cloud computing (VCC) and information-centric networking. By utilizing VCC technologies, it is effectively use in road security and traffic control. The benefits of VCC in VCN are superior, including faster turnover times, scalability, flexibility, cost savings, greater collaborations, advanced security, the prevention of data loss, data security, minimal maintenance, limitless storage capacity, traffic information aggregation, etc. VCN is an intelligent networking system that manages autonomous traffic, system security, privacy, and vehicle control capabilities. During communication, various adversary types have the potential to compromise the security and privacy of these networks. To preserve their security, privacy, confidentiality, and integrity, such systems require an authentication framework. The paper presents an elliptic curve cryptography (ECC) and biometrics-based secure authenticated framework for VCN. The suggested protocol accomplishes all security, privacy, and other criteria for secure communications against active and passive attackers. It is also demonstrated, both formally and informally, that the proposed framework is secure, correct and efficient. The study further establishes, using the simulation tool AVISPA, that the proposed protocol is secure against man-in-the-middle and replay attacks. Additionally, the study uses BAN logic to demonstrate how the mutual authentication property is proven. In VCN, the proposed protocol efficacy is evaluated and compared to other similar protocols within the study. The results show that the proposed framework is secure and efficient in terms of computation and communication overheads. Consequently, the proposed protocol will be advantageous for VCN.
Vinod Kumar 0003
IEEE Trans. Intell. Transp. Syst.1
2023 RKMIS: robust key management protocol for industrial sensor network system
Samiulla Itoo, Musheer Ahmad 0001, Vinod Kumar 0003, Ahmed Alkhayyat 0001
J. Supercomput.3
2022 A secure and energy efficient key agreement framework for vehicle-grid system
Akber Ali Khan, Vinod Kumar 0003, Musheer Ahmad 0001, Jangirala Srinivas
J. Inf. Secur. Appl.2
2022 RAPCHI: Robust authentication protocol for IoMT-based cloud-healthcare infrastructure
Vinod Kumar 0003, Mahmoud Shuker Mahmoud, Ahmed Alkhayyat 0001, Jangirala Srinivas, Musheer Ahmad 0002, Adesh Kumari
J. Supercomput.1
2021 LAKAF: Lightweight authentication and key agreement framework for smart grid network
Akber Ali Khan, Vinod Kumar 0003, Musheer Ahmad 0001, Saurabh Rana
J. Syst. Archit.2
2020 ESEAP: ECC based secure and efficient mutual authentication protocol using smart card
Adesh Kumari, Jangirala Srinivas, M. Yahya Abbasi, Vinod Kumar 0003, Mansaf Alam
J. Inf. Secur. Appl.4
2013 A Pairing-Free Identity Based Authentication Framework for Cloud Computing
Dheerendra Mishra, Vinod Kumar 0003, Sourav Mukhopadhyay
NSS2