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Securing secrets in cyber-physical systems: a cutting-edge privacy approach with consortium blockchain

Ali, Aitizaz and Al-rimy, Bander Ali Saleh and Almazroi, Abdulwahab Ali and Alsubaei, Faisal S. and Almazroi, Abdulaleem Ali and Saeed, Faisal (2023) Securing secrets in cyber-physical systems: a cutting-edge privacy approach with consortium blockchain. Sensors, 23 (16). pp. 1-29. ISSN 1424-8220

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Official URL: http://dx.doi.org/10.3390/s23167162

Abstract

In the era of interconnected and intelligent cyber-physical systems, preserving privacy has become a paramount concern. This paper aims a groundbreaking proof-of-concept (PoC) design that leverages consortium blockchain technology to address privacy challenges in cyber-physical systems (CPSs). The proposed design introduces a novel approach to safeguarding sensitive information and ensuring data integrity while maintaining a high level of trust among stakeholders. By harnessing the power of consortium blockchain, the design establishes a decentralized and tamper-resistant framework for privacy preservation. However, ensuring the security and privacy of sensitive information within CPSs poses significant challenges. This paper proposes a cutting-edge privacy approach that leverages consortium blockchain technology to secure secrets in CPSs. Consortium blockchain, with its permissioned nature, provides a trusted framework for governing the network and validating transactions. By employing consortium blockchain, secrets in CPSs can be securely stored, shared, and accessed by authorized entities only, mitigating the risks of unauthorized access and data breaches. The proposed approach offers enhanced security, privacy preservation, increased trust and accountability, as well as interoperability and scalability. This paper aims to address the limitations of traditional security mechanisms in CPSs and harness the potential of consortium blockchain to revolutionize the management of secrets, contributing to the advancement of CPS security and privacy. The effectiveness of the design is demonstrated through extensive simulations and performance evaluations. The results indicate that the proposed approach offers significant advancements in privacy protection, paving the way for secure and trustworthy cyber-physical systems in various domains.

Item Type:Article
Uncontrolled Keywords:consortium blockchain, cyber-physical systems, privacy preservation, tamper-resistance, trust
Subjects:Q Science > QA Mathematics > QA75 Electronic computers. Computer science
Divisions:Computing
ID Code:106927
Deposited By: Yanti Mohd Shah
Deposited On:04 Aug 2024 07:14
Last Modified:04 Aug 2024 07:14

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