Key-based dynamic S-Box approach for PRESENT lightweight block cipher
Yogaraja C A, Sheela Shobana Rani K · KSII Transactions on Internet and Information Systems · 2023
Internet-of-Things (IoT) is an emerging technology that interconnects millions of small devices to enable communication between the devices.It is heavily deployed across small scale to large scale industries because of its wide range of applications.These devices are very capable of transferring data over the internet including critical data in few applications.Such data is exposed to various security threats and thereby raises privacy-related concerns.Even devices can be compromised by the attacker.Modern cryptographic algorithms running on traditional machines provide authentication, confidentiality, integrity, and non-repudiation in an easy manner.IoT devices have numerous constraints related to memory, storage, processors, operating systems and power.Researchers have proposed several hardware and software implementations for addressing security attacks in lightweight encryption mechanism.Several works have made on lightweight block ciphers for improving the confidentiality by means of providing security level against cryptanalysis techniques.With the advances in the cipher breaking techniques, it is important to increase the security level to much higher.This paper, focuses on securing the critical data that is being transmitted over the internet by PRESENT using key-based dynamic S-Box.Security analysis of the proposed algorithm against other lightweight block cipher shows a significant improvement against linear and differential attacks, biclique attack and avalanche effect.A novel key-based dynamic S-Box approach for PRESENT strongly withstands cryptanalytic attacks in the IoT Network.