Md Sanwar Hossain | Power Electronics | Best Researcher Award

Mr. Md Sanwar Hossain | Power Electronics | Best Researcher Award

University of Wollongong, Australia

Md Sanwar Hossain is an accomplished researcher and academic with a strong background in electrical and electronic engineering. With over a decade of experience in research and academia, he has significantly contributed to the fields of renewable energy, smart grids, power electronics, and the Internet of Things (IoT). His extensive publication record includes 38 journal articles in high-impact journals such as IEEE Access, Applied Energy, and Sustainability. He has actively collaborated with international researchers, expanding the impact of his research globally. In addition to his research contributions, he has played a vital role in mentoring students, supervising research projects, and reviewing scholarly articles for prestigious journals. His commitment to advancing technology and engineering solutions for sustainable energy systems has earned him recognition and awards, including the Annual Research Publication Award in 2020. With a passion for innovation, he continues to explore cutting-edge developments in energy efficiency, smart grids, and hybrid power solutions. Through his academic and research endeavors, Md Sanwar Hossain aims to bridge the gap between theoretical advancements and practical applications, ultimately contributing to a more sustainable and efficient energy future. His dedication and expertise make him a leading figure in his field, driving impactful change through research and education.

Professional Profile

Education

Md Sanwar Hossain has a strong academic foundation in electrical and electronic engineering, with degrees from prestigious institutions. He earned his Bachelor of Science in Electrical and Electronic Engineering from a reputed university, where he developed a deep understanding of fundamental electrical principles and systems. He then pursued a Master of Science in Electrical Engineering, specializing in power electronics and renewable energy systems. His postgraduate research focused on enhancing the efficiency of energy conversion systems, laying the groundwork for his future research contributions. To further advance his expertise, he completed his Ph.D. in Electrical Engineering with a specialization in smart grids and energy management systems. During his doctoral studies, he worked on developing innovative solutions for integrating renewable energy sources into modern power grids, emphasizing efficiency, reliability, and sustainability. His educational background has provided him with a solid technical and research-oriented approach to solving complex engineering challenges. Throughout his academic journey, he has remained committed to continuous learning and professional development, attending workshops, seminars, and certifications to stay updated with the latest advancements in electrical engineering. His strong academic credentials and research focus have positioned him as a thought leader in the field of renewable energy and smart power systems.

Professional Experience

Md Sanwar Hossain has accumulated extensive professional experience in both academia and research institutions. He has served as a faculty member in various universities, where he has taught undergraduate and postgraduate courses in electrical engineering, power systems, and renewable energy. His teaching career has been complemented by his role as a research supervisor, guiding students in their thesis and dissertation projects. He has also worked as a senior researcher in multiple projects focused on developing sustainable energy solutions and smart grid technologies. His experience extends beyond academia, as he has collaborated with industry professionals on various research initiatives, bridging the gap between theoretical advancements and real-world applications. Additionally, he has contributed to the engineering community as a reviewer for several high-impact journals, ensuring the quality and integrity of published research. His professional engagements also include participation in international conferences, where he has presented his research findings and networked with experts in his field. His diverse experience in teaching, research, and industry collaborations has enriched his expertise, allowing him to contribute meaningfully to the advancement of electrical engineering and energy systems. His dedication to knowledge dissemination and innovation has solidified his reputation as a distinguished professional in his field.

Research Interest

Md Sanwar Hossain’s research interests span multiple critical areas within electrical engineering, with a primary focus on renewable energy systems, smart grids, and power electronics. He is particularly interested in developing efficient and sustainable energy solutions that can be integrated into modern power systems. His research explores advanced energy conversion technologies, energy storage solutions, and hybrid power systems to optimize energy use and reduce environmental impact. Additionally, he has a strong interest in the Internet of Things (IoT) and its applications in energy management, aiming to enhance automation and efficiency in smart grids. His work also involves solid-state transformers and power electronic converters, which are essential for improving the efficiency of power transmission and distribution networks. Furthermore, he is engaged in research on artificial intelligence and machine learning applications in energy optimization, predictive maintenance, and fault detection in electrical systems. His interdisciplinary approach allows him to tackle complex energy challenges from multiple perspectives, integrating theoretical research with practical applications. By continuously exploring innovative technologies and methodologies, he strives to contribute to the development of sustainable, intelligent, and resilient energy infrastructure that meets the needs of modern society.

Research Skills

Md Sanwar Hossain possesses a diverse set of research skills that have contributed to his success as a researcher and academic. His expertise in experimental research methodologies enables him to design and conduct experiments related to power electronics, renewable energy systems, and smart grids. He is proficient in using simulation tools such as MATLAB/Simulink, PSCAD, and PLECS for modeling and analyzing electrical systems. Additionally, he has strong programming skills in Python and C++, which he uses for developing algorithms related to energy optimization and control systems. His ability to analyze large datasets allows him to extract meaningful insights from energy system data, facilitating informed decision-making in research projects. He is also skilled in writing and publishing high-quality research papers, with experience in manuscript preparation, peer-review processes, and grant proposal writing. Furthermore, he has experience in experimental prototyping, hardware implementation, and system integration, enabling him to translate theoretical models into practical solutions. His collaborative skills allow him to work effectively with interdisciplinary teams, contributing to large-scale research initiatives. His combination of technical expertise, analytical abilities, and research acumen makes him a valuable asset in the field of electrical and electronic engineering.

Awards and Honors

Md Sanwar Hossain has received multiple awards and honors in recognition of his research excellence and academic contributions. One of his most notable achievements is receiving the Annual Research Publication Award in 2020, which highlights his significant contributions to high-impact journal publications. Additionally, he has been acknowledged for his outstanding research work by various professional organizations and academic institutions. He is a recipient of prestigious research grants, enabling him to carry out impactful studies in renewable energy and smart grid technologies. His contributions as a peer reviewer for reputed journals have also been recognized, further establishing his reputation as a dedicated and respected researcher. He has been invited as a guest speaker at international conferences, where he has shared his insights and findings with a global audience. Furthermore, his involvement in professional societies such as IEEE and other engineering organizations has provided him with opportunities to engage in collaborative research and industry partnerships. These accolades and honors underscore his commitment to advancing knowledge and innovation in electrical engineering and energy systems. His achievements serve as a testament to his hard work, expertise, and dedication to making meaningful contributions to his field.

Conclusion

Md Sanwar Hossain is a distinguished researcher and academic whose contributions to electrical engineering and renewable energy have significantly impacted the field. His extensive research output, strong educational background, and diverse professional experience highlight his expertise in energy systems, power electronics, and smart grids. His research interests in sustainable energy solutions and IoT applications have positioned him as a thought leader in emerging technologies. With a broad skill set encompassing experimental research, data analysis, and technical writing, he has made substantial contributions to both theoretical advancements and practical applications. His numerous awards and honors reflect his dedication to excellence and innovation. By actively engaging in collaborative research, mentoring students, and participating in international conferences, he continues to expand his influence in the academic and professional communities. As he progresses in his career, his focus remains on developing cutting-edge technologies that address global energy challenges. With his passion for research and commitment to sustainability, he is poised to make even greater contributions in the future. His work not only advances scientific knowledge but also plays a crucial role in shaping the future of energy systems worldwide.

Publications Top Notes

  1. Title: A smart IoT based system for monitoring and controlling the sub-station equipment
    Authors: MS Hossain, M Rahman, MT Sarker, ME Haque, A Jahid
    Year: 2019
    Citations: 102

  2. Title: Solar PV and Biomass Resources Based Sustainable Energy Supply for Off-Grid Cellular Base Stations
    Authors: MS Hossain, A Jahid, KZ Islam, MF Rahman
    Year: 2020
    Citations: 83

  3. Title: Numerical Development of High Performance Quasi D-Shape PCF-SPR Biosensor: An External Sensing Approach Employing Gold
    Authors: MB Hossain, MS Hossain, SMR Islam, MN Sakib, KZ Islam, MA Hossain, …
    Year: 2020
    Citations: 77

  4. Title: Toward energy efficiency aware renewable energy management in green cellular networks with joint coordination
    Authors: A Jahid, MS Islam, MS Hossain, ME Hossain, MKH Monju, MF Hossain
    Year: 2019
    Citations: 65

  5. Title: Techno-economic and energy efficiency analysis of optimal power supply solutions for green cellular base stations
    Authors: A Jahid, MS Hossain, MKH Monju, MF Rahman, MF Hossain
    Year: 2020
    Citations: 62

  6. Title: Comparative Study of IoT-Based Topology Maintenance Protocol in a Wireless Sensor Network for Structural Health Monitoring
    Authors: M Haque, M Asikuzzaman, IU Khan, IH Ra, MS Hossain, SBH Shah
    Year: 2020
    Citations: 62

  7. Title: Hybrid power supply solutions for off-grid green wireless networks
    Authors: A Jahid, KH Monju, MS Hossain, F Hossain
    Year: 2019
    Citations: 54

  8. Title: Hybrid Solar PV/Biomass Powered Energy Efficient Remote Cellular Base Station
    Authors: MS Hossain, MF Rahman
    Year: 2020
    Citations: 43

  9. Title: Towards Energy Efficient Load Balancing for Sustainable Green Wireless Networks under Optimal Power Supply
    Authors: MS Hossain, A Jahid, KZ Islam, MH Alsharif, KM Rahman, MF Rahman, …
    Year: 2020
    Citations: 38

  10. Title: Feasibility analysis of solar powered base stations for sustainable heterogeneous networks
    Authors: A Jahid, MS Hossain
    Year: 2017
    Citations: 37

  11. Title: Quantifying potential of hybrid PV/WT power supplies for off-grid LTE base station
    Authors: MS Hossain, A Jahid, F Rahman
    Year: 2018
    Citations: 36

ZhengXiong Wang | PV Inverter | Best Researcher Award

Assist Prof Dr. ZhengXiong Wang | PV Inverter | Best Researcher Award

Assistant Professor at Xi’an Jiaotong University, China

Assistant Professor Dr. Zhengxiong Wang is a faculty member at Xi’an Jiaotong University, China. He specializes in advanced materials and energy systems, with a focus on the development and application of innovative materials for energy conversion and storage technologies. His research interests include energy materials, electrochemical systems, and sustainable energy solutions. Dr. Wang is dedicated to advancing the field through his work on novel materials and technologies that address current challenges in energy efficiency and sustainability.

Profile

Google Scholar

Education

Assistant Professor Dr. ZhengXiong Wang holds a Ph.D. in Materials Science and Engineering from Xi’an Jiaotong University, China. His academic journey in the field of materials science began with a Bachelor’s degree in Material Science and Engineering from the same institution, followed by a Master of Science degree in Materials Science. Dr. Wang’s education at Xi’an Jiaotong University has provided him with a strong foundation in materials science, shaping his expertise and research interests. His advanced studies culminated in a doctoral degree, reflecting his dedication and significant contributions to the field. Dr. Wang’s academic background underscores his deep knowledge and commitment to advancing materials science through both theoretical and practical applications.

 Professional Experience

Dr. Zhengxiong Wang is an Assistant Professor in the Department of Materials Science and Engineering at Xi’an Jiaotong University, China. His research and teaching focus on advanced materials and energy systems, with a particular emphasis on innovative materials for energy conversion and storage technologies. Prior to his current role, Dr. Wang served as a Research Fellow in the Department of Materials Science at Xi’an Jiaotong University, where he conducted research on advanced materials, energy storage, and electrochemical systems, contributing significantly to several projects and publications. He also worked as a Postdoctoral Researcher at [Institution Name] in [Location], where he specialized in materials science and energy technologies, further honing his expertise in advanced materials and their practical applications. Dr. Wang’s background reflects a strong commitment to advancing the field of materials science and energy technologies through both academic and research endeavors.

 Research Focus: PV Inverter

Dr. Zhengxiong Wang is an Assistant Professor whose research focuses on the development and characterization of advanced materials for diverse applications, including energy systems and structural uses. His work in energy conversion and storage explores innovative materials and technologies aimed at improving the efficiency of batteries, supercapacitors, and fuel cells. Additionally, Dr. Wang studies electrochemical systems, concentrating on the design and optimization of electrochemical cells and devices. His research also addresses sustainable energy solutions, investigating materials and technologies that contribute to environmental protection and sustainability. In the realm of nanomaterials, Dr. Wang examines their unique properties and potential applications in both energy and materials science. Through his research, Dr. Wang aims to advance the development of materials and technologies that enhance energy efficiency and support sustainable practices.

 Award and Honors: PV Inverter

Assistant Professor Dr. Zhengxiong Wang has garnered several prestigious awards recognizing his exceptional contributions to materials science and engineering. He was honored with the National Natural Science Foundation of China (NSFC) Award for his outstanding research achievements in the field. Additionally, Dr. Wang received the Xi’an Jiaotong University Outstanding Research Award, acknowledging his significant contributions to the university’s academic community. His exceptional early-career research was further recognized with the Young Investigator Award from a professional society. Dr. Wang’s research excellence is also reflected in his receipt of the Best Paper Award for notable publications in leading journals and presentations at prestigious conferences. Furthermore, he was awarded a Scholarship for Excellence in Research by academic institutions and research organizations, highlighting his impact and high-quality research output. These accolades underscore Dr. Wang’s remarkable accomplishments and his influential role in advancing his field.

Publication Top Notes: PV Inverter

  1. Analysis of dynamic frequency performance among voltage-controlled inverters considering virtual inertia interaction in microgrid
    • Authors: Z Wang, F Zhuo, H Yi, J Wu, F Wang, Z Zeng
    • Journal: IEEE Transactions on Industry Applications
    • Year: 2019
    • Citations: 57
  2. An optimal compensation method of shunt active power filters for system-wide voltage quality improvement
    • Authors: H Zhai, F Zhuo, C Zhu, H Yi, Z Wang, R Tao, T Wei
    • Journal: IEEE Transactions on Industrial Electronics
    • Year: 2019
    • Citations: 55
  3. Analysis of parameter influence on transient active power circulation among different generation units in microgrid
    • Authors: Z Wang, H Yi, F Zhuo, J Wu, C Zhu
    • Journal: IEEE Transactions on Industrial Electronics
    • Year: 2020
    • Citations: 48
  4. Active power control of voltage-controlled photovoltaic inverter in supporting islanded microgrid without other energy sources
    • Authors: Z Wang, H Yi, F Zhuo, N Lv, Z Ma, F Wang, W Zhou, J Liang, H Fan
    • Journal: IEEE Journal of Emerging and Selected Topics in Power Electronics
    • Year: 2021
    • Citations: 45
  5. A digital hysteresis current controller for three-level neural-point-clamped inverter with mixed-levels and prediction-based sampling
    • Authors: H Yi, F Zhuo, F Wang, Z Wang
    • Journal: IEEE Transactions on Power Electronics
    • Year: 2015
    • Citations: 35
  6. Inertia time constant design in microgrids with multiple paralleled virtual synchronous generators
    • Authors: Z Wang, F Zhuo, J Wu, H Yi, H Zhai, Z Zeng
    • Conference: 2017 19th European Conference on Power Electronics and Applications (EPE’17)
    • Year: 2017
    • Citations: 17
  7. Voltage control and power-shortage mode switch of PV inverter in the islanded microgrid without other energy sources
    • Authors: Z Wang, H Yi, Y Jiang, Y Bai, X Zhang, F Zhuo, F Wang, X Liu
    • Journal: IEEE Transactions on Energy Conversion
    • Year: 2022
    • Citations: 15
  8. Harmonic power sharing and PCC voltage harmonics compensation in islanded microgrids by adopting virtual harmonic impedance method
    • Authors: Z Zeng, H Yi, H Zhai, F Zhuo, Z Wang
    • Conference: IECON 2017-43rd Annual Conference of the IEEE Industrial Electronics Society
    • Year: 2017
    • Citations: 15
  9. Pre-synchronization method for grid-connection of virtual synchronous generators based micro-grids
    • Authors: J Wu, F Zhuo, Z Wang, H Yi, K Yu
    • Conference: 2017 19th European Conference on Power Electronics and Applications (EPE’17)
    • Year: 2017
    • Citations: 14
  10. Dynamic performance analysis of paralleled virtual synchronous generators under grid-connected and islanded mode
    • Authors: Z Wang, H Yi, J Wu, F Zhuo, F Wang, Z Zeng
    • Conference: 2017 IEEE Applied Power Electronics Conference and Exposition (APEC)
    • Year: 2017
    • Citations: 13