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Quantum Cyber-Attack on Blockchain-based VANET

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arxiv 2304.04411 v2 pith:FSBDMBBE submitted 2023-04-10 cs.CR

classification cs.CR
keywords quantumvanetblockchain-basedcyber-attackarchitectureattackblockchainbreak
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Blockchain-based Vehicular Ad-hoc Network (VANET) is widely considered as secure communication architecture for a connected transportation system. With the advent of quantum computing, there are concerns regarding the vulnerability of this architecture against cyber-attacks. In this study, a potential threat is investigated in a blockchain-based VANET, and a corresponding quantum cyber-attack is developed. Specifically, a quantum impersonation attack using Quantum-Shor algorithm is developed to break the Rivest-Shamir-Adleman (RSA) encrypted digital signatures of VANET and thus create a threat for the trust-based blockchain scheme of VANET. A blockchain-based VANET, vehicle-to-everything (V2X) communication, and vehicular mobility are simulated using OMNET++, the extended INET library, and vehicles-in-network simulation (VEINS) along with simulation of urban mobility (SUMO), respectively. A small key RSA based message encryption is implemented using IBM Qiskit, which is an open-source quantum software development kit. The findings reveal that the quantum cyber-attack, example, impersonation attack is able to successfully break the trust chain of a blockchain-based VANET. This highlights the need for a quantum secured blockchain.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enhancing Transportation Cyber-Physical Systems Security: A Shift to Post-Quantum Cryptography

    cs.CR 2024-11 reject novelty 3.0 of 10

    A literature review plus an OMNeT++ simulation concluding that CRYSTALS-Kyber works over Ethernet but likely misses the 100 ms latency deadline for safety-critical wireless TCPS.

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