Design And Development of Hybrid Optimised Chaotic Encryption Scheme for Mutual Authentication in Iot Edge Devices

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Somireddy Pavani, Arun Sahayadhas

Abstract

The proliferation of IoT edge devices has increased the demand for robust, efficient, and secure data transmission, particularly as these devices face severe security concerns due to their scattered and frequently resource-constrained nature. This work describes the design and implementation of a Hybrid Optimised Chaotic Encryption Scheme for Mutual Authentication in IoT Edge Environments, which combines the Tent logistics chaotic algorithm with Seasoning Optimization approaches. The Tent logistics algorithm's chaotic features give inherent randomness and complexity, making it ideal for encryption due to its sensitivity to initial conditions and unpredictability. Combining this with Seasoning Optimization improves the Tent algorithm's performance by fine-tuning its parameters, leading in increased security and lower computational costs. The Seasoning Optimization approach increases the algorithm's convergence rate.


 

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