Sidi Ahamed Hamet | Robotics and Automation | Research Excellence Award

Mr. Sidi Ahamed Hamet | Robotics and Automation | Research Excellence Award

SELF | Niger

Sidi Ahmed Hamet is an emerging researcher in the field of electromechanics and control systems, contributing to innovative developments in intelligent automation and vibration control. He completed his education in Electromechanics (Electrical) from Djillali Liabes University, where he built a strong foundation in multidisciplinary engineering principles. His academic experience is complemented by involvement in advanced research focused on control theory and mechatronic systems. His published work, including a journal article on visual servoing sliding mode control with vibration model compensation for trajectory tracking in a 2-DOF ball balancer system, reflects his interest in precision control and dynamic system optimization. He has demonstrated expertise in integrating control algorithms with real-time mechanical systems, particularly in areas requiring stability and accuracy. His research interests include sliding mode control, robotics, vibration analysis, and intelligent system design. While still at an early stage of his career, his work shows strong potential for impactful contributions. In conclusion, Sidi Ahmed Hamet represents a promising talent dedicated to advancing modern electromechanical engineering and control technologies.


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Featured Publications

Elena Strelnikova | Engineering and Technology | Best Paper Award

Prof. Elena Strelnikova | Engineering and Technology | Best Paper Award

Anatolii Pidgorny Institute of Power Machines and Systems, NAS of Ukraine | Ukraine

Dr. E.A. Strelnikova is a distinguished Ukrainian researcher specializing in structural mechanics, numerical methods, and fluid-structure interaction. She completed her MSc in Mathematics at V. N. Karazin Kharkiv National University in 1974, followed by a PhD in 1983 on 2D contact problems for anisotropic cracked plates, and a DSc in 2003 focusing on the strength and vibrations of turbo-machine units using the boundary element method. Dr. Strelnikova has held full professorships at Kharkiv Polytechnic Institute, Karazin National University, and Kharkiv National University of Radio Electronics. Since 2007, she has been a leading researcher at the A. Pidhorny Institute of Power Machines and Systems of the National Academy of Sciences of Ukraine. Her research interests include singular and hypersingular integral equations, fracture dynamics, and fluid-structure interaction. She has published over 261 papers, with more than 1986 citations and an h-index of 29 . Dr. Strelnikova’s work has significantly contributed to the development of computational techniques combining boundary and finite element methods to analyze fluid-structure interaction problems. Her contributions have been recognized through various awards in engineering and applied mathematics. Dr. Strelnikova’s extensive experience and research have made her a leading figure in her field, with her work continuing to influence studies in structural mechanics and computational methods.

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Featured Publications

Ventsel, E. S., Naumenko, V., Strelnikova, E., & Yeseleva, E. (2010). Free vibrations of shells of revolution filled with a fluid. Engineering Analysis with Boundary Elements, 34(10), 856–862.

Sierikova, O., Koloskov, V., Degtyarev, K., & Strelnikova, O. (2021). The deformable and strength characteristics of nanocomposites improving. Materials Science Forum, 1038, 144–153.

Strelnikova, E., Kriutchenko, D., Gnitko, V., & Degtyarev, K. (2020). Boundary element method in nonlinear sloshing analysis for shells of revolution under longitudinal excitations. Engineering Analysis with Boundary Elements, 111, 78–87.

Strelnikova, E. A., Choudhary, N., Kriutchenko, D. V., Gnitko, V. I., et al. (2020). Liquid vibrations in circular cylindrical tanks with and without baffles under horizontal and vertical excitations. Engineering Analysis with Boundary Elements, 120, 13–27.

Karaiev, A., & Strelnikova, E. (2011). Singular integrals in axisymmetric problems of elastostatics. International Journal of Modeling, Simulation, and Scientific Computing, 11(1), 115–130.