Moina Ajmeri | Sustainable Development | Best Research Article Award

Dr. Moina Ajmeri | Sustainable Development | Best Research Article Award

Assitant Professor at National Institute of Technology Patna, India

Dr. Moina Ajmeri is a dedicated and accomplished academic serving as an Assistant Professor (Grade-II, Level-11) in the Department of Electrical Engineering at the National Institute of Technology (NIT) Patna. With an impressive h-index of 8 and over 298 citations, Dr. Ajmeri has made significant contributions to the fields of control systems, power electronics, and renewable energy systems. Throughout her career, she has demonstrated a strong commitment to research, teaching, and innovation, underlined by her involvement in several patents and high-impact journal publications. Her multidisciplinary approach and passion for advancing control techniques for complex industrial processes and energy applications have positioned her as an influential voice in her field.

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scopus

Education

Dr. Ajmeri holds a Ph.D. in Electrical Engineering from the prestigious Indian Institute of Technology (IIT) Patna, completed in 2016. Her doctoral research focused on the development of new two-degree-of-freedom control schemes tailored for integrating and unstable processes with time delay, and she graduated with a commendable CPI of 8.93/10. She also holds an M.Tech. in Electronics and Communication Engineering from Birla Institute of Technology, Mesra, Ranchi, which she completed in 2010, securing an excellent academic score of 88.50%. Her undergraduate foundation in engineering was established at Magadh University, Bodh Gaya, where she earned a B.Sc. Engineering in Electronics and Communication with distinction, obtaining 82.33% marks.

Experience

Dr. Ajmeri’s professional journey began at NIT Patna, where she joined as an Assistant Professor (On Contract) in the Department of Electronics and Communication Engineering in 2015. Post completion of her Ph.D., she transitioned to a permanent faculty role in the Department of Electrical Engineering in 2018, and since September 2022, she has held her current position as an Assistant Professor (Grade-II, Level-11). During this period, she has combined her academic instruction with active research, mentoring students, and contributing to the academic and administrative growth of the department.

Research Interest

Dr. Ajmeri’s research interests lie in process modeling and system identification, control design for both linear and nonlinear systems, and advanced control applications for power electronic circuits. Her expertise also extends to micro-grids and renewable energy systems, where she seeks to develop robust and efficient control strategies to meet the demands of modern sustainable energy networks. Her research stands at the crossroads of theory and application, striving to solve real-world industrial challenges while pushing the boundaries of control systems engineering.

Award

In recognition of her research excellence and commitment to innovation, Dr. Ajmeri has been an instrumental contributor to two patents related to high-gain DC-DC boost converter technologies, co-filed in 2023 under the aegis of NIT Patna. These patents are designed to address the challenges of high switching frequencies and multi-level energy conversion, which are pivotal in renewable energy and power electronic systems. These innovations showcase her practical problem-solving skills and her vision for transforming power electronics.

Publication

Dr. Ajmeri’s scholarly output features several high-impact journal articles. Selected examples include:

Ajmeri, M. (2024). “Novel twofold control for delayed industrial processes with integrating and inverse response characteristics,” IFAC Journal of Systems and Control (Q3).

Kumar, P., & Ajmeri, M. (2025). “A non-isolated buck-boost converter based on SEPIC topology for renewable energy applications,” Computers and Electrical Engineering, Volume 124, Part A.

Kumar, S., & Ajmeri, M. (2023). “Smith predictor–based sliding mode control with hyperbolic tangent function for unstable processes,” Transactions of the Institute of Measurement and Control (Q2).

Ajmeri, M. (2022). “Analytical design of enhanced PID controller with set-point filter for unstable processes with time delay,” International Journal of Dynamics and Control (Q2).

Ajmeri, M., & Ali, A. (2017). “Analytical design of modified Smith predictor for unstable second-order processes with time delay,” International Journal of Systems Science (Q1).

Ajmeri, M., & Ali, A. (2015). “Two degree of freedom control scheme for unstable processes with small time delay,” ISA Transactions (Q1).

Ajmeri, M., & Ali, A. (2013). “Direct synthesis based tuning of the parallel control structure for integrating processes,” International Journal of Systems Science (Q1).

These publications have not only been cited by numerous international researchers but have also inspired new studies in both academic and industrial circles, attesting to their significant scholarly impact.

Conclusion

Dr. Moina Ajmeri’s research work exemplifies academic excellence, innovation, and societal relevance. Her consistent contributions to the field of advanced control systems and renewable energy technologies have set a high benchmark for scientific research. The nominated article reflects both technical brilliance and real-world applicability, making her an ideal candidate for the Research for Best Research Article Award. Dr. Ajmeri’s dedication to pushing the boundaries of engineering knowledge and her impactful publications make her deserving of this prestigious recognition.

Cenker Aktemur – Energy management in buildings – Best Researcher Award

Cenker Aktemur - Energy management in buildings - Best Researcher Award

Sivas University of Science and Technology - Turkey

AUTHOR PROFILE

GOOGLE SCHOLAR

CENKER AKTEMUR

Cenker Aktemur is an Assistant Professor in the Department of Mechanical Engineering at Sivas University of Science and Technology in Turkey. He completed his Ph.D. in Mechanical Engineering at Kocaeli University in 2023, where he specialized in enhancing the thermodynamic performance of solar-assisted absorption and vapor compression cascade refrigeration cycles. He holds an MSc and BSc in Mechanical Engineering from Eastern Mediterranean University.

ACADEMIC AND PROFESSIONAL EXCELLENCE

Dr. Aktemur's academic journey is marked by consistent excellence. During his Ph.D., he maintained a GPA of 3.52/4 and was awarded a prestigious Ph.D. scholarship by the Council of Higher Education (CoHE) in the field of Renewable Energy and Energy Storage, under the 100/2000 Program. His master's thesis focused on the energy and economic analyses of natural gas heating systems, while his undergraduate capstone project involved the design and manufacturing of a reverse shoulder prosthesis.

PROFESSIONAL EXPERIENCE

Dr. Aktemur has diverse work experience, including a role as an R&D Engineer at CMAK Crane Systems and a compulsory internship at Yılmazlar Steel Construction and Machinery Manufacturing. His professional expertise extends to advanced software skills in AutoCAD, CATIA, SolidWorks, and Siemens NX, among others.

HONORS AND AWARDS

Dr. Aktemur has received numerous honors and awards, including a Ph.D. scholarship for his research in renewable energy, and consistent recognition for academic excellence during his undergraduate and master's studies. He has also completed several advanced courses and certifications in engineering software and tools.

SCIENTIFIC CONTRIBUTIONS

An active researcher, Dr. Aktemur has contributed to the scientific community through his publications and role as a scientific referee for several high-impact journals, including Applied Thermal Engineering, Solar Energy, and Energy & Environment. His ORCID ID is 0000-0001-9045-832X, and his research profiles are accessible on platforms such as Google Scholar, WoS, and Scopus.

Dr. Aktemur's dedication to advancing the field of mechanical engineering, particularly in renewable energy and refrigeration systems, underscores his commitment to academic and professional excellence.

NOTABLE PUBLICATIONS

Optimising of thermal insulation thickness based on wall orientations and solar radiation using heating-degree hour method 2024

Thermodynamic Optimization of Utilization LiBr + LiCl/H2O Solution Mixture on a Single-Effect Absorption Chiller Driven by Solar Energy 2023 (2)

Thermodynamic optimisation of a booster-ejector vapour compression refrigeration system using solar energy and R152a/Cu nano-refrigerant 2023 (5)

Thermodynamic performance enhancement booster assisted ejector expansion refrigeration systems with R1270/CuO nano-refrigerant 2022 (12)

Comparative energy and exergy analysis of a subcritical cascade refrigeration system using low global warming potential refrigerants 2021 (52)