Lightweight and Secure IoT-based Payment Protocols from an Identity-Based Signature Scheme

dc.contributor.authorAbubaker Wahaballa
dc.date.accessioned2025-06-19T07:08:31Z
dc.date.issued2022-10-25
dc.description.abstractAfter the great success of mobile wallets, the Internet of Things (IoT) leaves the door wide open for consumers to use their connected devices to access their bank accounts and perform routine banking activities from anywhere, anytime, and with any device. However, consumers need to feel safe when interacting with IoT-based payment systems, and their personal information should be protected as much as possible. In this paper, we introduce two lightweight and secure IoT-based payment protocols based on an identity-based signature scheme. We adopt a server-aided verification technique to construct the first scheme. This technique allows to outsource the heavy computation overhead on the sensor node to a cloud server while maintaining the user’s privacy. The second scheme is built upon a pairing-free ECC-based security protocol to avoid the heavy computational complexity of bilinear pairing operations. The security reduction results of both schemes are held in the Random Oracle Model (ROM) under the discrete logarithm and computational Diffie–Hellman assumptions. Finally, we experimentally compare the proposed schemes against each other and against the original scheme. Compared with existing schemes, our proposed schemes achieve significant efficiency in terms of communication, computational and storage overheads.
dc.identifier.urihttps://research.arabeast.edu.sa/handle/123456789/238
dc.language.isoen
dc.publisherMDPI, Electronics
dc.titleLightweight and Secure IoT-based Payment Protocols from an Identity-Based Signature Scheme
dc.typeArticle

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