Mr. Hanqing Zhang | Renewable Energy Awards | Best Researcher Award

Mr. Hanqing Zhang | Renewable Energy Awards | Best Researcher AwardΒ 

Mr. Hanqing Zhang, Harbin Institute Of Technology, China

Prof. Hanqing Zhang is a prominent researcher in the field of Electrical Engineering, currently pursuing a Master’s degree at Harbin Institute of Technology (HIT), China. he has a solid academic background with a Bachelor’s degree in Electrical Engineering and Automation from the same institution. His research interests focus on renewable energy, power systems, grid stability, and energy management, making significant contributions through various projects, including the optimal design and control of Building-Integrated Photovoltaics (BIPV) systems and intelligent microgrid technologies for port self-powered container terminals. Prof. Zhang has also served as a postdoctoral fellow at the University of Genoa, Italy. He has authored several journal articles and conference papers, showcasing his expertise in control systems, energy optimization, and photovoltaic technology. As an active member of the academic community, he serves as a journal reviewer and is a member of the China Power Supply Society. His dedication to advancing renewable energy solutions continues to influence the field.

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Summary of Suitability for the Best Researcher Award: Prof. Hanqing Zhang

Prof. Hanqing Zhang, a Master’s candidate at the Harbin Institute of Technology (HIT), has demonstrated significant promise and achievements in the field of electrical engineering, particularly in renewable energy and power systems. His academic background and research experiences position him as a strong candidate for the Best Researcher Award for the following reasons.

πŸŽ“ Education Background

  • Master in Electrical Engineering and Automation
    πŸ“… 2023.09 – 2026.07
    🏫 Harbin Institute of Technology, China

    • Specialization: Energy optimization and renewable energy systems
  • Bachelor in Electrical Engineering and Automation
    πŸ“… 2019.09 – 2023.07
    🏫 Harbin Institute of Technology, China

    • Achieved: Outstanding Graduation Design by the Chinese Ministry of Education

πŸ’Ό Work and Research Experience

  • Postdoctoral Fellow
    πŸ“ University of Genoa, Italy
    πŸ“… 2024.07 – 2024.07

    • Research in cutting-edge renewable energy technologies

πŸ”¬ Research Projects (as Principal Investigator)

  1. Optimal Design and Control of BIPV Systems Using Digital Twin
    πŸ“… 2022.05 – 2024.04
    🀝 Collaboration: Key Laboratory of Anhui Province

    • Topics: Photovoltaic array optimization, energy storage management, and DC converter control
  2. Key Technologies for Intelligent Microgrid in Port Self-Powered Container Terminals
    πŸ“… 2024.07 – 2026.05
    🀝 Collaboration: Industry Partner

    • Focus: Power flow control strategies and advanced energy storage systems

πŸ† Awards and Honors

🌟 Outstanding Graduation Design Awarded by the Chinese Ministry of Education, 2023

πŸŽ–οΈ Recognized for Significant Contributions to the Field of Energy Optimization in Microgrids

πŸ‘©β€πŸ« Journal Reviewer & Member of the China Power Supply Society

πŸŽ“ Recipient of Postdoctoral Fellowship at the University of Genoa, 2024

PublicationΒ Top Notes:

Adaptive continuous sliding mode control of Buck converters based on zero-crossing detection

Research on signal quantization of parallel DC-DC converter network control system

Influence of Signal Quantization on Multivariable Control Systems with Sliding Mode

Adaptive Second-Order Sliding Mode Control of Buck Converters with Multi-Disturbances

Frequency Characteristics of Buck Converter Control Systems with Second-order Sliding Mode

Dr. Shehroze Khan | Stretchable | Best Researcher Award

Dr. Shehroze Khan | Stretchable | Best Researcher Award

Dr. Shehroze Khan, NED University of Engineering and Technology, Pakistan

Shehroze Tahir Khan is a dynamic mechanical engineer, currently serving as an Assistant Professor at NED University of Engineering and Technology, Karachi. He earned his Ph.D. in Mechanical Engineering from the same institution in 2023. With extensive experience in both industry and academia, Shehroze has a robust portfolio in areas such as MEMS device fabrication, smart materials, and nanogenerators. He has contributed to numerous high-impact research projects, secured research grants, and published extensively in peer-reviewed journals. His professional career spans across teaching, conducting cutting-edge research, and industrial roles where he spearheaded critical operational improvements in various engineering processes. A dedicated educator and researcher, Shehroze is committed to advancing the field of mechanical engineering through his innovative projects and research, fostering the next generation of engineers

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Summary of Shehroze Tahir Khan’s Suitability for the Best Researcher Award:

Shehroze Tahir Khan is highly suitable for the Best Researcher Award due to his extensive research in MEMS and smart materials, his active role in academia and industry, and his notable achievements in securing research grants and leading innovative projects. His contributions significantly advance the fields of flexible electronics and mechanical systems, making him a deserving candidate for this prestigious award.

Β Β πŸŽ“Β EducationΒ 

Shehroze Tahir Khan holds a Ph.D. in Mechanical Engineering from NED University of Engineering and Technology, Karachi (2023), with a thesis on dynamic mechanical characterizations of thin film materials for MEMS applications. He also earned a Master’s in Engineering Management (M.E.M.) from the Department of Industrial and Manufacturing Engineering at the same university in 2015, where he honed his skills in managing complex engineering projects and systems. His academic journey began with a Bachelor of Engineering (B.E.) in Mechanical Engineering from NEDUET in 2013, where he developed a strong foundation in mechanical systems, materials, and engineering design. Throughout his educational career, Shehroze demonstrated academic excellence, successfully integrating theory with practice and contributing significantly to research projects. His educational background has equipped him with the knowledge and skills to excel in both academic and industrial sectors.

πŸ’Ό Experience

Shehroze Tahir Khan has built a versatile career in both academia and industry. He is currently an Assistant Professor at NED University of Engineering and Technology, where he teaches mechanical engineering courses, including Mechanical Vibrations, and supervises undergraduate projects in mechatronics and thin-film devices. From 2016 to 2023, he served as a Lecturer at NEDUET, guiding students through various engineering disciplines such as Mechanics of Machines and Engineering Graphics. Before joining academia, Shehroze worked as a Production Engineer at International Steels Limited from 2014 to 2016, where he led a team in overseeing plant operations, quality control, and maintenance. His industrial experience also includes optimizing production processes, implementing safety measures, and managing inventory. His diverse roles have allowed him to bridge the gap between theoretical knowledge and practical application, making significant contributions in both educational and industrial settings.

Β πŸ…Β Awards and HonorsΒ 

Shehroze Tahir Khan has been recognized for his research and academic contributions with several awards and honors. He won a prestigious research grant of PKR 2.3 million for a project aimed at the digitalization of a hydraulic spring testing machine, funded by the Ministry of Science and Technology (MoST). His organizational skills were highlighted when he successfully coordinated the 8th International Mechanical Engineering Conference (IMEC-2018) at NED University, Karachi. During his time at International Steels Limited, Shehroze implemented the 5S methodology, improving operational efficiency and safety, a contribution that was widely acknowledged within the organization. His work in both academia and industry showcases his commitment to innovation and excellence, earning him a respected place among his peers. These accolades underscore his dedication to advancing engineering practices and fostering continuous improvement in his field.

 🌍 Research Focus 

Shehroze Tahir Khan’s research focuses on the fabrication and characterization of Micro-Electro-Mechanical Systems (MEMS) devices, with particular attention to stretchable and flexible electronics. His work in mechanical characterization techniques for thin-film devices has significant implications for the development of next-generation smart materials, including triboelectric and piezoelectric nanogenerators. Shehroze is dedicated to exploring the mechanical properties of advanced materials to enhance their application in MEMS, making strides in the fields of energy harvesting and flexible electronics. His research also delves into the integration of smart materials into wearable technology, contributing to advancements in the Internet of Things (IoT) and energy-efficient systems. By focusing on the practical applications of these materials in dynamic environments, his work has the potential to revolutionize sectors such as healthcare, consumer electronics, and renewable energy.

Β πŸ“– Publications Top Notes

Electromechanical characterizations of PEDOT: PSS and its nanocomposite thin films on a cost-effective polymer substrate for microelectromechanical systems (MEMS) applications.
Characterizations of a cost-effective single component polymer for stretchable and flexible microelectromechanical systems applications
Dynamic electromechanical characterizations of poly (vinylidene fluoride) based nanocomposite films on ultra‐low modulus polymer substrate
Fabrication and characterizations of a low-cost thermal actuator for micro-electro-mechanical systems (MEMS) applications
PIEZOELECTRIC TESTING OF COMMERCIAL PVDF THIN FILM SENSOR

Dr. Mahboob Syed | Biosensors | Best Researcher Award

Dr. Mahboob Syed | Biosensors | Best Researcher Award

Dr. Mahboob Syed, Osmania University, India

Syed Mahboob is a distinguished physicist with a robust background in materials science. Born on July 25, 1978, in India, he holds a Ph.D. from Osmania University, where he specialized in relaxor ferroelectric compounds. With over 64 published research papers, he has made significant contributions to the field, particularly in dielectric properties and impedance studies. His postdoctoral research in Taiwan and Japan has furthered his expertise in semiconductor integration and materials characterization. Syed is multilingual, fluent in English, Hindi, Telugu, and Urdu, and has collaborated with various national and international institutions, enriching the global scientific community.

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Summary of Suitability for Best Researcher Award:

Dr. Syed Mahboob is highly suitable for the Best Researcher Award due to his extensive academic qualifications, research experience, and impressive publication record. He holds a Ph.D. in Physics, awarded in 2006 by Osmania University, with a specialization in computational physics. His strong foundation in both theoretical and experimental physics has allowed him to contribute significantly to the fields of ferroelectrics, semiconductor integration, and dielectric materials. His research work has spanned prestigious institutions globally, including postdoctoral positions at National Taiwan University of Science and Technology and Hiroshima University, Japan. Throughout his research career, Dr. Mahboob has demonstrated expertise in advanced experimental techniques, including impedance spectroscopy, scanning electron microscopy, atomic force microscopy, and ferroelectric testing systems, which are critical in material science and sensor development.

Β πŸŽ“Β Education

Syed Mahboob completed his Ph.D. in Physics at Osmania University, Hyderabad, in August 2006, focusing on relaxor ferroelectric materials under Prof. G. S. Kumar. His academic journey began with an M.Sc. in Physics with a specialization in Computational Physics, graduating with distinction in 2000. Prior to that, he earned a B.Sc. in Mathematics, Physics, and Chemistry, achieving first division honors. His educational foundation has been instrumental in his extensive research career, enabling him to explore complex scientific phenomena and contribute to advancements in material sciences.

Β πŸ’Ό Experience

With a rich research experience spanning over two decades, Syed Mahboob has worked on multiple high-profile projects. He served as a Junior and Senior Research Fellow on projects funded by DST and DRDO, focusing on ferroelectric materials. His postdoctoral roles at National Taiwan University and Hiroshima University allowed him to delve into advanced ceramics and semiconductor research. Since 2009, he has dedicated himself to independent research, producing numerous publications that highlight his expertise in experimental techniques and materials characterization, including dielectric and impedance measurements.

Β πŸ…Β Awards and Honors

Syed Mahboob has received recognition for his contributions to the field of physics, particularly in the study of relaxor ferroelectrics. His Ph.D. research earned accolades for its innovative approach to material synthesis and characterization. His published papers have garnered citations and respect within the scientific community, further validating his expertise. He has been invited to speak at several international conferences, showcasing his research and insights into material properties. Syed continues to be a valuable asset to academic and research institutions, promoting advancements in physics.

  🌍 Research Focus

Syed Mahboob’s research primarily centers on relaxor ferroelectric materials and their applications in modern technology. His work investigates the dielectric properties and impedance behavior of various ceramic compounds, with a keen interest in lead-free materials. He employs advanced experimental techniques, including plasma-enhanced chemical vapor deposition and scanning electron microscopy, to study material characteristics at the microstructural level. His ongoing research aims to contribute to sustainable technologies and the development of new materials that can enhance electronic devices’ efficiency and performance.

Β πŸ“– Publication Top Notes

Impedance and ac conductivity studies on Ba(Nd0.2Ti0.6Nb0.2)O3 ceramic prepared through conventional and microwave sintering route
  • Citations: 62
Electrical conduction in (Na0.125Bi0.125Ba0.65Ca0.1)(Nd0.065Ti0.87Nb0.065)O3 ceramic
  • Citations: 47
Dielectric behaviour of microwave sintered rare-earth doped BaTiO3 ceramics
  • Citations: 31
Impedance spectroscopy and conductivity studies on B site modified (Na0.5Bi0.5)(NdxTi1βˆ’2xNbx)O3 ceramics
  • Citations: 21
Dielectric Properties of BaTiO3 Based Lead Free Relaxor Prepared Through Conventional and Microwave Sintering
  • Citations: 20