Aggregated Zero-Knowledge Proof and Blockchain-Empowered Authentication for Autonomous Truck Platooning

dc.contributor.authorLi, Wanxin
dc.contributor.authorMeese, Collin
dc.contributor.authorGuo, Hao
dc.contributor.authorNejad, Mark
dc.date.accessioned2023-07-17T18:52:24Z
dc.date.available2023-07-17T18:52:24Z
dc.date.issued2023-05-10
dc.descriptionThis article was originally published in IEEE Transactions on Intelligent Transportation Systems. The version of record is available at: https://doi.org/10.1109/TITS.2023.3271436. © 2023 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
dc.description.abstractPlatooning technologies enable trucks to drive cooperatively and automatically, providing benefits including less fuel consumption, greater road capacity, and safety. To establish trust during dynamic platooning formation, ensure vehicular data integrity, and guard platoons against potential attackers in mixed fleet environments, verifying any given vehicle’s identity information before granting it access to join a platoon is pivotal. Besides, due to privacy concerns, truck owners may be reluctant to disclose private vehicular information, which can reveal their business data to untrusted third parties. To address these issues, this is the first study to propose an aggregated zero-knowledge proof and blockchain-empowered system for privacy-preserving identity verification in truck platooning. We provide the correctness proof and the security analysis of our proposed authentication scheme, highlighting its increased security and fast performance. The platooning formation procedure is re-designed to seamlessly incorporate the proposed authentication scheme, including the 1st catch-up and cooperative driving steps. The blockchain performs the role of verifier within the authentication scheme and stores platooning records on its digital ledger to guarantee data immutability and integrity. In addition, the proposed programmable access control policies enable truck companies to define who is allowed to access their platoon records. We implement the proposed system and perform extensive experiments on the Hyperledger platform. The results show that the blockchain can provide low latency and high throughput, the aggregated approach can offer a constant verification time of 500 milliseconds regardless of the number of proofs, and the platooning formation only takes seconds under different strategies. The experimental results demonstrate the feasibility of our design for use in real-world truck platooning.
dc.description.sponsorshipThis work was supported in part by the Federal Highway Administration Grant through the Artificial Intelligence Enhanced Integrated Transportation Management System (2020–2023), in part by the Guangdong Basic and Applied Basic Research Foundation under Grant 21201910240004714, in part by the Natural Science Foundation of Shaanxi Provincial Department of Education under Grant 2022JQ-639, and in part by the Basic Research Programs of Taicang under Grant TC2022JC23.
dc.identifier.citationLi, Wanxin, Collin Meese, Hao Guo, and Mark Nejad. “Aggregated Zero-Knowledge Proof and Blockchain-Empowered Authentication for Autonomous Truck Platooning.” IEEE Transactions on Intelligent Transportation Systems, 2023, 1–15. https://doi.org/10.1109/TITS.2023.3271436.
dc.identifier.issn1558-0016
dc.identifier.urihttps://udspace.udel.edu/handle/19716/32999
dc.language.isoen_US
dc.publisherIEEE Transactions on Intelligent Transportation Systems
dc.subjectautonomous vehicles
dc.subjectblockchain
dc.subjectdata privacy
dc.subjectidentity verification
dc.subjectplatooning
dc.subjectzero-knowledge proof
dc.titleAggregated Zero-Knowledge Proof and Blockchain-Empowered Authentication for Autonomous Truck Platooning
dc.typeArticle

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