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Title: | Sooner Lightweight cryptosystem: Towardss Privacy Preservation of Resource-Constrained Devices. |
Authors: | Alfa, Abraham Ayegba Alhassan, John Kolo Olaniyi, Olayemi Mikail Olalere, Morufu |
Keywords: | Lightweight cryptosystem Block size Key size Resource-constrained devices Hashes Hardening |
Issue Date: | 2021 |
Publisher: | Springer |
Series/Report no.: | Vol. 1350, pp. 1-15; |
Abstract: | The use of cryptosystem became popular because of the increased need for exchanges across untrusted medium especially Internet-enabled networks. On the basis of application several forms of cryptosystems have been developed for purpose of authentication, confidentiality, integrity, and non-repudiation. Cryptosystems make use of encryption schemes that convert plaintext to ciphertext in diverse areas of applications. The vast progressions in the Internet of Things (IoT) technology and resource-constrained devices have given rise to massive deployment of sensor devices and growth of services targeted at lightweight devices. Though, these devices support a number of services, they require strong lightweight encryption approaches for privacy protection of data. Existing lightweight cryptosystems fall short on the expected privacy levels and applicability in emerging resource-constrained environment. This paper develops a mathematical model for a Sooner lightweight cryptographic scheme based on reduced and hardened ciphertext block sizes, hash sizes and key sizes of traditional cryptosystems and Public Blockchain technology for ubiquitous systems. Thereafter, the hardening procedure offered by the RSA homomorphic encryption was applied for the purpose of generating stronger, secure and lightweight AES, RSA and SHA-3 in order to deal with untrusted channels exchanges. The proposed Sooner is recommended for adoption in public Blockchain-based smart systems and applications for the purpose of data privacy. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/6481 |
Appears in Collections: | Cyber Security Science |
Files in This Item:
File | Description | Size | Format | |
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Alfa et al 2021_Sooner Lightweight(conf).pdf | 83.84 kB | Adobe PDF | View/Open |
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