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May 14, 2026Peer-to-Peer Networking and Applications0 citationsOpen Access

Secure authentication protocol for internet of vehicles using blockchain based authorized user detection

VTVijay TiwariPKP Sathish Kumar

Key Points

  • The research aims to develop a secure authentication protocol for the Internet of Vehicles using blockchain technology and deep learning.
  • Integrates a Blockchain-based Authentication Model with Deep Learning for user detection.
  • Utilizes a Lightweight Deep Dense Recurrent Model and Adaptive Grouper Moray Eel Optimization Algorithm.
  • Designed to support large-scale vehicular networks with low authentication latency.
  • Achieved improved detection accuracy and computational efficiency using LDDRM and AGrME.
  • Successfully prevented unauthorized access and identity spoofing with unique cryptographic identities on the blockchain.
  • Demonstrated robustness and scalability of the security solution in IoV ecosystems.

Abstract

In recent years, the increasing connectivity in the Internet of Vehicles (IoV) has raised critical concerns regarding secure authentication and intrusion detection. The proposed methodology presents a Blockchain-based IoV Authentication Model integrated with a Deep Learning-based authorized participant detection to address these challenges. Leveraging the decentralized and tamper-proof nature of blockchain technology, the system assigns each vehicle a unique cryptographic identity, securely recorded on the blockchain to prevent unauthorized access and identity spoofing. It ensures a reliable and immutable authentication process across the network. To further enhance the security infrastructure, a deep learning-based authorized participant detection is embedded within the blockchain storage framework to detect unauthorized users in real time. The authorized participant detection is built using Lightweight Deep Dense Recurrent Model (LDDRM), which balances computational efficiency and detection accuracy. The performance of the LDDRM is further improved through the integration of an Adaptive Grouper Moray Eel (AGrME) Optimization Algorithm, which fine-tunes the model’s loss function for optimal learning and threat detection. The combined approach strengthens the IoV ecosystem by providing robust, intelligent, and scalable security solutions. In addition, the proposed framework is designed to support large-scale vehicular networks with low authentication latency and reduced computational overhead through the use of lightweight deep learning inference and consortium blockchain-based consensus.

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Cite This Study

Tiwari et al. (2026) studied this question.

synapsesocial.com/papers/6a05684ea550a87e60a20c65https://doi.org/10.1007/s12083-026-02235-5
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