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基于生物特征识别和模糊承诺方案的智慧城市节能数据隐私保护协议

Smart city energy efficient data privacy preservation protocol based on biometrics and fuzzy commitment scheme.

作者信息

Nyangaresi Vincent Omollo, Abduljabbar Zaid Ameen, Mutlaq Keyan Abdul-Aziz, Bulbul Salim Sabah, Ma Junchao, Aldarwish Abdulla J Y, Honi Dhafer G, Al Sibahee Mustafa A, Neamah Husam A

机构信息

Department of Computer Science and Software Engineering, Jaramogi Oginga Odinga University of Science and Technology, Bondo, 40601, Kenya.

Department of Applied Electronics, Saveetha School of Engineering, SIMATS, Chennai, 602105, Tamilnadu, India.

出版信息

Sci Rep. 2024 Jul 13;14(1):16223. doi: 10.1038/s41598-024-67064-z.

Abstract

Advancements in cloud computing, flying ad-hoc networks, wireless sensor networks, artificial intelligence, big data, 5th generation mobile network and internet of things have led to the development of smart cities. Owing to their massive interconnectedness, high volumes of data are collected and exchanged over the public internet. Therefore, the exchanged messages are susceptible to numerous security and privacy threats across these open public channels. Although many security techniques have been designed to address this issue, most of them are still vulnerable to attacks while some deploy computationally extensive cryptographic operations such as bilinear pairings and blockchain. In this paper, we leverage on biometrics, error correction codes and fuzzy commitment schemes to develop a secure and energy efficient authentication scheme for the smart cities. This is informed by the fact that biometric data is cumbersome to reproduce and hence attacks such as side-channeling are thwarted. We formally analyze the security of our protocol using the Burrows-Abadi-Needham logic logic, which shows that our scheme achieves strong mutual authentication among the communicating entities. The semantic analysis of our protocol shows that it mitigates attacks such as de-synchronization, eavesdropping, session hijacking, forgery and side-channeling. In addition, its formal security analysis demonstrates that it is secure under the Canetti and Krawczyk attack model. In terms of performance, our scheme is shown to reduce the computation overheads by 20.7% and hence is the most efficient among the state-of-the-art protocols.

摘要

云计算、飞行自组织网络、无线传感器网络、人工智能、大数据、第五代移动网络和物联网的发展推动了智慧城市的发展。由于它们的大规模互联,大量数据通过公共互联网进行收集和交换。因此,在这些开放的公共渠道中,交换的消息容易受到众多安全和隐私威胁。尽管已经设计了许多安全技术来解决这个问题,但其中大多数仍然容易受到攻击,而有些则部署了计算量较大的加密操作,如双线性配对和区块链。在本文中,我们利用生物识别技术、纠错码和模糊承诺方案,为智慧城市开发一种安全且节能的认证方案。这是基于生物识别数据难以复制这一事实,因此可以挫败诸如旁道攻击等攻击。我们使用布劳尔斯-阿巴迪-尼达姆逻辑对我们协议的安全性进行了形式化分析,结果表明我们的方案在通信实体之间实现了强相互认证。我们协议的语义分析表明,它可以减轻诸如失步、窃听、会话劫持、伪造和旁道攻击等攻击。此外,其形式化安全分析表明,在卡内蒂和克劳奇克攻击模型下它是安全的。在性能方面,我们的方案显示出可将计算开销降低20.7%,因此是现有协议中最有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/482c/11246532/75ab33a1fdb4/41598_2024_67064_Fig1_HTML.jpg

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