H
Hayder Natiq
Researcher at Universiti Putra Malaysia
Publications - 59
Citations - 618
Hayder Natiq is an academic researcher from Universiti Putra Malaysia. The author has contributed to research in topics: Chaotic & Attractor. The author has an hindex of 9, co-authored 27 publications receiving 309 citations. Previous affiliations of Hayder Natiq include University of Technology, Iraq.
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A new hyperchaotic map and its application for image encryption
TL;DR: Experimental results and security analysis show that SHAM-IEA has strong capability to withstand statistical analysis, differential attack, chosen-plaintext and chosen-ciphertext attacks.
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Self-excited and hidden attractors in a novel chaotic system with complicated multistability
Hayder Natiq,Mohamad Rushdan Md. Said,Muhammad Rezal Kamel Ariffin,Shaobo He,Lamberto Rondoni,Lamberto Rondoni,Santo Banerjee +6 more
TL;DR: A new 3D chaotic system with trigonometric function term as a nonlinear controller with high sensitivity to its initial values and parameters, hence it can be applied in chaos-based cryptographic applications and the non-periodicity of coexisting attractors of the system is investigated.
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Dynamics and Complexity of a New 4D Chaotic Laser System
TL;DR: To investigate how much a chaotic system with multistability behavior is suitable for cryptographic applications, a pseudo-random number generator (PRNG) is generated based on the complexity results of the laser system.
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From 5G to 6G Technology: Meets Energy, Internet-of-Things and Machine Learning: A Survey
Mohammed Najah Mahdi,Abdul Rahim Ahmad,Qais Saif Qassim,Hayder Natiq,Mohammed Ahmed Subhi,Moamin Mahmoud +5 more
TL;DR: A thorough review of 370 papers on the application of energy, IoT and machine learning in 5G and 6G from three major libraries: Web of Science, ACM Digital Library, and IEEE Explore is presented.
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Can hyperchaotic maps with high complexity produce multistability
TL;DR: This work introduces a simple controller on the M-NHM, which can add one more loop in each iteration, to overcome the chaos degradation in the multistability regions.