Oleksandr Sivak | Robotics and Automation | Research Excellence Award

Mr. Oleksandr Sivak | Robotics and Automation | Research Excellence Award

Rheinland-Pfälzische Technische Universität | Germany

Mr. Oleksandr Sivak’s research focuses on embedded computing systems, robotics, and interdisciplinary engineering integrating physics, electronics, and software development. His work involves designing and implementing control systems for robotic platforms, including bipedal robots, combining high-level algorithms with low-level motor control using MCU and FPGA technologies. He has expertise in electrical and mechanical system design, including power supply systems, logic circuits, and simulation-driven engineering. His research also covers data acquisition, processing, and optimization using C++ and Python, contributing to the development of efficient, scalable, and intelligent embedded and mechatronic systems for advanced automation applications.

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Featured Publications

High Toughness TiB2–Al2O3 Composite Ceramics Produced by Reactive Hot Pressing with Fusible Components
A. Yu. Popov, A. A. Sivak, H. Yu. Borodianska, I. L. Shabalin, Advances in Applied Ceramics, 2015.

Особливості утворення тугоплавких фаз в системі Al–Cr2O3–B2O3
O. A. Sivak, M. I. Cherednyk, I. M. Totskyi, O. Yu. Popov, V. A. Makara, Physics and Chemistry of Solid State, 2014.

Intuitive Motion: Acceleration-Based Inverse Kinematics on Arbitrary Coordinates
P. Vonwirth, A. Vierling, O. Sivak, K. Berns, Climbing and Walking Robots Conference, 2024.

Foundations of Probabilistic Behavior Networks for Structured Distributed Control of Complex Systems
P. Vonwirth, O. Sivak, K. Berns, IEEE RAS/EMBS International Conference for Biomedical Robotics and Biomechatronics, 2024.

Ahmed Fouly | Mechanical Engineering | Best Academic Researcher Award

Assoc. Prof. Dr. Ahmed Fouly | Mechanical Engineering | Best Academic Researcher Award

College of Engineering, King Saud University | Saudi Arabia

Dr. Ahmed Fouly is an accomplished engineer and researcher with a robust interdisciplinary profile: he holds a PhD in Mechatronics and Robotics (2017) from the Egypt–Japan University of Science and Technology, and earlier earned an MSc and BSc in Production Engineering & Mechanical Design from Minia University. Over the years he has progressed through academic ranks to become Associate Professor at King Saud University and concurrently in Minia University. He has published over 90 peer-reviewed articles . 873 citations and a current h-index of 18 as per Google Scholar . His research spans materials science tribology and wear, mechatronics and MEMS, AI modeling, and contact modeling using FEA. His academic experience includes service as course instructor in mechatronics, robotics, control, sensors, mechanical design, and finite element analysis, and supervising numerous projects in biomedical composites and robotics. He has secured competitive research grants (e.g. from King Salman Center, oriented research programs) and won multiple awards including “scientific publication awards” over successive years, best conference paper awards, and institutional recognition for robotics design. In sum, Dr. Fouly is a dynamic scholar fusing engineering, materials, and intelligent systems, with strong publication impact and leadership in emerging interdisciplinary fields.

Profiles : Google Scholar | Scopus | Orcid

Featured Publications

Fouly, A., Ibrahim, A. M. M., Sherif, E. S. M., FathEl-Bab, A. M. R., & Badran, A. H. (2021). Effect of low hydroxyapatite loading fraction on the mechanical and tribological characteristics of poly (methyl methacrylate) nanocomposites for dentures. Polymers, 13(6), 857.

Ahmadian, H., Fouly, A., Zhou, T., Kumar, A. S., Fathy, A., & Weijia, G. (2024). Investigating the valence balance of adding Nano SiC and MWCNTs on the improvement properties of copper composite using mechanical alloying and SPS techniques. Diamond and Related Materials, 145, 111113.

Fouly, A., & Alkalla, M. G. (2020). Effect of low nanosized alumina loading fraction on the physicomechanical and tribological behavior of epoxy. Tribology International, 152, 106550.

Fouly, A., Assaifan, A. K., Alnaser, I. A., Hussein, O. A., & Abdo, H. S. (2022). Evaluating the mechanical and tribological properties of 3D printed polylactic-acid (PLA) green-composite for artificial implant: Hip joint case study. Polymers, 14(23), 5299.

Fouly, A., Abdo, H. S., Seikh, A. H., Alluhydan, K., Alkhammash, H. I., Alnaser, I. A., … (2022). Evaluation of mechanical and tribological properties of corn cob-reinforced epoxy-based composites—theoretical and experimental study.