Mohammad Maalandish | Power Electronics | Best Researcher Award

Dr. Mohammad Maalandish | Power Electronics | Best Researcher Award

Assistant Professor from Gdansk University of Technoloy, Iran

Mohammad Maalandish is an emerging researcher in the field of power electronics, currently pursuing a Ph.D. at the University of Tabriz, Iran. With a focused and impactful academic trajectory, he has contributed significantly to the advancement of energy conversion systems, particularly in designing and controlling high-performance DC-DC and DC-AC power converters. Born in 1990 in Marand, Iran, he completed his B.Sc. in Electrical Engineering from Azarbaijan Shahid Madani University and his M.Sc. in Power Electronics from the University of Tabriz. Mohammad has published over 40 journal and conference papers, many of which appear in high-ranking international journals. His work has been recognized nationally and internationally through prestigious awards and inclusion in Stanford’s World’s Top 2% Scientists list for several consecutive years. Apart from research, he is actively involved in teaching and laboratory activities, demonstrating a commitment to academic mentorship. His international exposure through a research visit to Aarhus University in Denmark further strengthens his global research outlook. Equipped with a range of technical skills and a collaborative mindset, Mohammad exemplifies a new generation of dedicated scholars whose contributions are shaping the future of energy systems and electronic applications.

Professional Profile

Education

Mohammad Maalandish’s educational background demonstrates a strong and focused progression in the field of electrical and power engineering. He began his academic journey at Azarbaijan Shahid Madani University in Tabriz, Iran, where he earned his B.Sc. in Electrical Engineering in 2013. Motivated to specialize further, he pursued his M.Sc. in Power Electronics at the University of Tabriz, completing it in 2016. His postgraduate studies centered on advanced topics in power electronics, laying a solid foundation for research in power conversion and control systems. Currently, he is a Ph.D. candidate at the Faculty of Electrical and Computer Engineering, Power Engineering Department at the University of Tabriz. His doctoral research continues to explore complex areas such as multi-input multi-output (MIMO) converters and model predictive control (MPC) for electric vehicle and renewable energy applications. The continuity and depth of his education reflect a well-planned academic pathway, reinforced by a strong theoretical and practical understanding of electrical engineering principles. His education has been instrumental in enabling him to conduct high-level research and publish extensively in reputable international journals, making him a valuable contributor to the global scientific community.

Professional Experience

Mohammad Maalandish’s professional experience encompasses a combination of academic, research, and technical roles that enhance his profile as a well-rounded researcher. Since 2014, he has been affiliated with the University of Tabriz in various capacities. He served as a teaching assistant from 2014 to 2016 and again from 2018 to 2024, supporting instruction in power electronics and electrical engineering fundamentals. He also worked as a laboratory assistant at the Power Electronics Laboratory from 2019 to 2024, actively contributing to experimental research and mentoring undergraduate and graduate students. Notably, Mohammad expanded his academic exposure internationally through a research visiting position at Aarhus University in Denmark between March 2022 and August 2023. This experience allowed him to collaborate with European researchers and contribute to international projects. He has also provided consulting services as a senior advisor at VIET Company, demonstrating an ability to bridge academic knowledge with industry applications. Through these roles, he has acquired valuable experience in teaching, research supervision, and applied engineering, which collectively support his academic growth and research productivity.

Research Interest

Mohammad Maalandish’s research interests are deeply rooted in modern power electronics and its applications in renewable energy and electric transportation. His work primarily focuses on the development and optimization of power conversion systems, including DC-DC and DC-AC converters. He is particularly interested in designing high step-up converters with advanced control strategies to enhance efficiency and stability. Another key area of his research is Multi-Input Multi-Output (MIMO) converter architecture, which offers improved flexibility and control for complex energy systems. His investigations also extend to Model Predictive Control (MPC), a robust technique for controlling converters in real-time applications, especially in electric vehicle power systems. Additionally, he explores methods for eliminating leakage current in converter systems to ensure operational safety and efficiency. Renewable energy integration, especially through innovative converter topologies, is another cornerstone of his research. His contributions are aimed at improving power density, minimizing losses, and promoting sustainable energy solutions. By addressing both theoretical and applied aspects, his research is well-positioned to make a meaningful impact on the fields of energy conversion and smart grid technologies.

Research Skills

Mohammad Maalandish possesses a wide array of research and technical skills that equip him to tackle complex problems in electrical and power engineering. He is proficient in simulation and modeling tools such as MATLAB, PSCAD/EMTDC, and PSIM, which are essential for designing and analyzing power electronic systems. His expertise also includes hardware programming and embedded system design using platforms such as Arduino and Code Vision AVR. For circuit design and PCB layout, he is skilled in using Altium Designer. He is capable of conducting both theoretical analysis and experimental validation, having extensive experience in laboratory setups and prototype development. Mohammad’s familiarity with MIMO systems, soft switching techniques, and high step-up converter design demonstrates his capacity to innovate in high-efficiency energy systems. His technical competence is matched by his ability to document and disseminate research through high-impact publications. Furthermore, his experience as a teaching and lab assistant has refined his skills in research mentoring and technical communication. Collectively, his skill set reflects a balanced combination of analytical thinking, hands-on experimentation, and technological fluency essential for advanced research in power electronics.

Awards and Honors

Mohammad Maalandish has received multiple awards and distinctions that reflect his exceptional performance and recognition in the academic and scientific communities. From 2018 to 2021, he was consecutively awarded the Research Prize by the National Elites Foundation of Iran for being a top student. In 2022 and 2023, he was honored as the top student at the University of Tabriz, further underscoring his consistent academic excellence. A particularly prestigious recognition came in the form of the Alborz Prize in 2022, awarded to national top students in Iran. Perhaps most notably, he has been listed among the World’s Top 2% Scientists by Stanford University and Elsevier from 2021 to 2024. This global distinction highlights the impact and citation strength of his scientific work on an international scale. These accolades not only affirm his research capabilities but also demonstrate his dedication to scholarly excellence. They position him as a leader among early-career researchers in the field of electrical and power engineering. These repeated and diverse recognitions are a testament to his sustained contribution and future potential in academia.

Conclusion

In conclusion, Mohammad Maalandish stands out as a highly promising researcher with an exceptional record of academic achievement and scientific contribution. His focused research in power electronics addresses critical global needs in energy conversion and renewable integration. With over 40 publications in top-tier journals and conferences, multiple national and international honors, and hands-on technical expertise, he exemplifies the qualities of a next-generation leader in engineering research. His educational and professional background, combined with international research exposure and active academic involvement, reflect a well-rounded and impactful profile. His ability to bridge theory with practical application, particularly in converter design and electric vehicle systems, places him at the forefront of innovation in the power electronics domain. Recognitions such as the Alborz Prize and his inclusion in the World’s Top 2% Scientists affirm both the quality and impact of his work. With continued emphasis on research leadership, interdisciplinary collaboration, and broader industrial engagement, Mohammad is well-positioned to contribute significantly to both academic and practical advancements in his field. He is a worthy candidate for the Best Researcher Award and an asset to the scientific community.

Publications Top Notes

  • Robust optical-levitation-based metrology of nanoparticle’s position and mass
    Authors: Y. Zheng, L.M. Zhou, Y. Dong, C.W. Qiu, X.D. Chen, G.C. Guo, F.W. Sun
    Journal: Physical Review Letters, 124(22), 223603
    Year: 2020
    Citations: 83

  • Non-Markovianity-assisted high-fidelity Deutsch–Jozsa algorithm in diamond
    Authors: Y. Dong, Y. Zheng, S. Li, C.C. Li, X.D. Chen, G.C. Guo, F.W. Sun
    Journal: npj Quantum Information, 4(1), 3
    Year: 2018
    Citations: 59

  • Coherent dynamics of multi-spin V center in hexagonal boron nitride
    Authors: W. Liu, V. Ivády, Z.P. Li, Y.Z. Yang, S. Yu, Y. Meng, Z.A. Wang, N.J. Guo, F.F. Yan, …
    Journal: Nature Communications, 13(1), 5713
    Year: 2022
    Citations: 55

  • Temperature dependent energy gap shifts of single color center in diamond based on modified Varshni equation
    Authors: C.C. Li, M. Gong, X.D. Chen, S. Li, B.W. Zhao, Y. Dong, G.C. Guo, F.W. Sun
    Journal: Diamond and Related Materials, 74, 119–124
    Year: 2017
    Citations: 53

  • A robust fiber-based quantum thermometer coupled with nitrogen-vacancy centers
    Authors: S.C. Zhang, Y. Dong, B. Du, H.B. Lin, S. Li, W. Zhu, G.Z. Wang, X.D. Chen, …
    Journal: Review of Scientific Instruments, 92(4)
    Year: 2021
    Citations: 44

  • Near-infrared-enhanced charge-state conversion for low-power optical nanoscopy with nitrogen-vacancy centers in diamond
    Authors: X.D. Chen, S. Li, A. Shen, Y. Dong, C.H. Dong, G.C. Guo, F.W. Sun
    Journal: Physical Review Applied, 7(1), 014008
    Year: 2017
    Citations: 35

  • Quantum imaging of the reconfigurable VO₂ synaptic electronics for neuromorphic computing
    Authors: C. Feng, B.W. Li, Y. Dong, X.D. Chen, Y. Zheng, Z.H. Wang, H.B. Lin, W. Jiang, …
    Journal: Science Advances, 9(40), eadg9376
    Year: 2023
    Citations: 28

  • Focusing the electromagnetic field to 10⁻⁶λ for ultra-high enhancement of field-matter interaction
    Authors: X.D. Chen, E.H. Wang, L.K. Shan, C. Feng, Y. Zheng, Y. Dong, G.C. Guo, …
    Journal: Nature Communications, 12(1), 6389
    Year: 2021
    Citations: 28

  • Quantum enhanced radio detection and ranging with solid spins
    Authors: X.D. Chen, E.H. Wang, L.K. Shan, S.C. Zhang, C. Feng, Y. Zheng, Y. Dong, …
    Journal: Nature Communications, 14(1), 1288
    Year: 2023
    Citations: 27

  • Experimental implementation of universal holonomic quantum computation on solid-state spins with optimal control
    Authors: Y. Dong, S.C. Zhang, Y. Zheng, H.B. Lin, L.K. Shan, X.D. Chen, W. Zhu, …
    Journal: Physical Review Applied, 16(2), 024060
    Year: 2021
    Citations: 26

SANTHANA KRISHNAN T | Power Converters | Best Researcher Award

Dr. SANTHANA KRISHNAN T | Power Converters | Best Researcher Award 

ASSISTANT PROFESSOR (SELECTION GRADE) at RAJALAKSHMI ENGINEERING COLLEGE (AUTONOMOUS),CHENNAI, India

T. Santhana Krishnan is an accomplished academic with 17 years of experience in electrical engineering and management. He holds a B.E. in Electrical and Electronics Engineering, an M.Tech in Power Electronics and Drives, and is pursuing a PhD at Anna University. His research focuses on power electronics, renewable energy systems, and control strategies, with numerous publications in national and international journals, including high-impact papers on wind energy and photovoltaic systems. Krishnan has been an Assistant Professor at Rajalakshmi Engineering College since 2005 and has previously lectured at Ayya Nadar Janaki Ammal College. His professional memberships include IEEE, the Institution of Engineers (India), and ISTE. Despite his extensive publication record and teaching experience, enhancing his research impact through higher citations, international collaborations, and securing additional funding could further strengthen his profile in the academic community.

Profile

Education

T. Santhana Krishnan’s educational journey is marked by a strong foundation in engineering and management. He completed his Bachelor of Engineering in Electrical and Electronics Engineering from Mepco Schlenk Engineering College, Sivakasi, under Madurai Kamaraj University, graduating with First Class honors. He further pursued a Master of Management and Systems at Thiagarajar College, Madurai Kamaraj University, also achieving First Class. Krishnan continued his academic advancement with a Master of Technology in Power Electronics and Drives from S.R.M. Institute of Science and Technology, where he graduated with a CGPA of 8.62, again with First Class honors. He is currently pursuing a PhD in Electrical and Electronics Engineering at Anna University, focusing on advanced topics in his field. His educational background underscores a commitment to excellence and a robust understanding of both theoretical and practical aspects of electrical engineering and management.

Professional Experience

T. Santhana Krishnan has garnered extensive professional experience in the field of electrical engineering over a span of 17 years. He began his career as a lecturer in the Department of Management Studies at Ayya Nadar Janaki Ammal College, Sivakasi, from June 2001 to July 2003, where he also served as a Placement Coordinator. Since June 2005, he has been an Assistant Professor-SG at Rajalakshmi Engineering College, Thandalam, contributing significantly to both teaching and research. His roles have encompassed various responsibilities, including curriculum development and student mentoring. His academic journey is complemented by his involvement in research projects, publications, and presentations at both national and international conferences. This experience highlights his commitment to advancing knowledge in electrical engineering and his dedication to fostering academic growth and professional development in his students.

Research Interest

T. Santhana Krishnan’s research interests predominantly revolve around power electronics and renewable energy systems. His work focuses on developing advanced control strategies and efficient converters for wind and solar energy systems, including high-frequency AC choppers and quasi-resonant boost converters. He has extensively explored sensorless vector control of induction motor drives and the design and implementation of photovoltaic systems. His research also delves into optimizing energy conversion and management systems, aiming to enhance performance and reliability in various applications. Additionally, Krishnan is interested in the integration of these systems into microgrids, utilizing innovative control techniques such as Particle Swarm Optimization (PSO) based Maximum Power Point Tracking (MPPT). His contributions include designing novel solutions for energy efficiency and sustainability, underscoring his commitment to advancing technologies in power electronics and renewable energy.

Research Skills

T. Santhana Krishnan exhibits a diverse range of research skills critical to advancements in electrical engineering and power systems. His expertise includes power electronics, renewable energy systems, and control strategies, reflected in his extensive publication record. He demonstrates proficiency in modeling and simulation, particularly in areas such as wind energy conversion systems and photovoltaic fed converters. His ability to employ advanced control techniques and optimization methods is evident from his work on MPPT controllers and quasi-resonant converters. Skilled in using tools like MATLAB and EMTP, he adeptly handles complex simulations and analyses. His involvement in national and international conferences indicates strong communication skills and a commitment to staying current with industry developments. Moreover, his membership in professional organizations such as IEEE and ISTE showcases his engagement with the research community and access to a broad network of expertise.

Award and Recognition

T. Santhana Krishnan has garnered significant recognition for his contributions to the field of electrical engineering. His extensive research in power electronics and renewable energy systems has been showcased in numerous prestigious journals and conferences, including international publications in high-impact journals. As a member of IEEE, the Institution of Engineers (India), and ISTE, he is actively engaged with the global academic and professional community. His dedication to teaching, demonstrated through his 17 years of experience, includes roles as a lecturer and placement coordinator, highlighting his commitment to student development and academic excellence. His work on topics such as wind energy conversion and photovoltaic systems has been well-received, reflecting his expertise and impact in the field. These accomplishments underscore his qualification for prestigious awards and further solidify his reputation as a distinguished researcher and educator.

Conclusion

T. Santhana Krishnan is a well-qualified candidate for the Best Researcher Award, with a substantial publication record and extensive teaching experience. His work in power electronics and renewable energy systems is significant, and his active engagement in professional organizations further supports his candidacy. To strengthen his application, he could focus on increasing the impact of his research through higher citation rates, expanding international collaborations, and securing additional research funding. Continued contributions to high-impact journals and conferences will also enhance his profile as a leading researcher in his field

Publications Top Notes

  1. Theoretical Study on Power Distribution Systems for Electric Vehicles
    • Authors: VS Chandrika, A Sivakumar, TS Krishnan, J Pradeep, S Manikandan, …
    • Journal: Intelligent Engineering Applications and Applied Sciences for Sustainability
    • Year: 2023
    • Citations: 38
  2. Power quality enhancement in sensitive local distribution grid using interval type-II fuzzy logic controlled DSTATCOM
    • Authors: SB Pandu, CK Sundarabalan, NS Srinath, TS Krishnan, GS Priya, …
    • Journal: IEEE Access
    • Year: 2021
    • Volume and Issue: 9, 59888-59899
    • Citations: 38
  3. Fuzzy logic based optimal tip speed ratio MPPT controller for grid connected WECS
    • Authors: PS Babu, CK Sundarabalan, C Balasundar, TS Krishnan
    • Journal: Materials Today: Proceedings
    • Year: 2021
    • Volume and Issue: 45, 2544-2550
    • Citations: 16
  4. Real time metropolitan bus positioning system design using GPS and GSM
    • Authors: B Janarthanan, T Santhanakrishnan
    • Conference: 2014 International Conference on Green Computing Communication and …
    • Year: 2014
    • Citations: 16
  5. Optimizing solar power plant efficiency through advanced analytical framework and comparative analysis
    • Authors: V Senthil Kumar, R Aruna, M Varalatchoumy, P Manikannan, …
    • Journal: Journal of Intelligent & Fuzzy Systems
    • Year: 2024
    • Citations: 5
  6. Stability Analysis and Region in control parameter space of thermal system with constant delays
    • Authors: SB Pandu, T Santhanakrishnan, CK Sundarabalan, V Venkatachalam
    • Journal: Journal of Control Engineering and Applied Informatics
    • Year: 2021
    • Volume and Issue: 23 (3), 24-31
    • Citations: 4
  7. Survey on combinations of load frequency control, ABT and economic dispatch control in a deregulated environment
    • Authors: GS Priya, P Sivakumar, TS Krishnan
    • Conference: 2017 International Conference on Computation of Power, Energy Information …
    • Year: 2017
    • Citations: 2
  8. Photovoltaic-wind-battery and diesel generator-based hybrid energy system for residential buildings in smart city Coimbatore
    • Authors: SK Thirumalai, A Karthick, PK Dhal, S Pundir
    • Journal: Environmental Science and Pollution Research
    • Year: 2024
    • Volume and Issue: 31 (9), 14229-14238
    • Citations: 1
  9. An Enhanced Optimal Design of a Phase Changing Material Based Photo Voltaic System using Deep Learning
    • Authors: MA Prasanna Lakshmi G S, Mani P K, S. Sangeetha, T. Santhana Krishnan, T …
    • Conference: 2023 International Conference on Artificial Intelligence and Knowledge …
    • Year: 2023
    • Citations: 1
  10. A study on the functionality of PID and fuzzy logic controllers for Quadratic Boost Converter (QBC)
    • Authors: SH Arigela, TS Krishnan, SK Krishnakumar, A Mohanraj, MR Mahajan
    • Conference: 2022 International Conference on Power, Energy, Control and Transmission …
    • Year: 2022
    • Citations: 1