Assist Prof Dr. Mahmoud Samiei Moghaddam | Energy Systems Award | Network Protocols Excellence Award

Assist Prof Dr. Mahmoud Samiei Moghaddam | Energy Systems Award | Network Protocols Excellence Award

Assist Prof Dr. Mahmoud Samiei Moghaddam, Islamic Azad University, Iran

πŸŽ“ Dr. Mahmoud Samiei Moghaddam, Ph.D. in Electrical Engineering from Khaje Nasir Toosi University of Technology, is an adept educator skilled in teaching electrical engineering courses and overseeing student projects. With expertise in designing and implementing telecommunication, CCTV, and paging systems, as well as establishing electrical laboratories, he brings a wealth of practical knowledge. In his extensive career, he has held key managerial positions at Aerospace Industries Organization and Islamic Azad University, showcasing strong leadership abilities. Dr. Moghaddam’s research pursuits, spanning space vector modulation, hybrid power systems control, voltage regulator optimization, and wireless charging for electric vehicles, have significantly contributed to the field, evident through his published papers and active involvement in conferences. πŸ”¬

🌐 Professional Profile:

Scopus

πŸŽ“ Qualifications and Education:

Dr. Mahmoud Samiei Moghaddam holds a Ph.D. in Electrical Engineering from Khaje Nasir Toosi University of Technology. He possesses expertise in teaching electrical engineering courses, guiding student projects at various academic levels, and designing, installing, and commissioning telecommunication systems, CCTV systems, and paging systems. Additionally, he is proficient in designing and setting up electrical laboratories.

πŸ’Ό Work Experience:

With a rich executive background, Dr. Moghaddam has served as the Manager of the Telecommunication Systems Group at the Aerospace Industries Organization and as the Manager of the Electrical and Electrotechnical Group at Damghan Branch of Islamic Azad University. He has also held roles as the Head of the Electrical and Computer Group and the Senior Electrical Group at the university, showcasing his leadership and managerial skills.

πŸ”¬ Research and Academic Achievements:

Dr. Moghaddam’s research contributions include numerous published papers in esteemed conferences and journals, covering topics such as space vector modulation, control of hybrid power systems, optimization of voltage regulators, and wireless charging systems for electric vehicles. He has also actively participated in conferences, presented papers, and undertaken research projects, demonstrating his commitment to advancing the field of electrical engineering.

Scopus Metrics:

  • πŸ“Β Publications: 46 documents indexed in Scopus.
  • πŸ“ŠΒ Citations: A total of 23 citations for his publications, reflecting the widespread impact and recognition of Dr. Moghaddam’s research within the academic community.

Publications Top Notes :

  1. Stochastic security-constrained transmission and energy storage expansion planning considering high penetration of renewable energy in integrated gas-electricity networks
    • Published in Energy Storage in 2024
  2. Bi-level Stochastic Optimization Model for Coordination of Transmission and Distribution Networks Considering Generic Resources
    • Published in the Journal of Electrical Engineering and Technology in 2024
  3. Multi-area distribution grids optimization using D-FACTS devices by M-PSO algorithm
    • Published in Energy Reports in 2023
  4. Stochastic Security-constrained Unit Commitment Considering Electric Vehicles, Energy Storage Systems, and Flexible Loads with Renewable Energy Resources
    • Published in the Journal of Modern Power Systems and Clean Energy in 2023
  5. Stochastic Dynamic Reconfiguration in Smart Distribution System Considering Demand-Side Management, Energy Storage System, Renewable and Fossil Resources and Electric Vehicle
    • Published in the Journal of Electrical Engineering and Technology in 2023

 

 

 

 

 

Mr. Bin Du | AI Application in Renewable Energy Award | Outstanding Research and Development Award

Mr. Bin Du | AI Application in Renewable Energy Award | Outstanding Research and Development Award

Mr. Bin Du, Southeast University, China

Dr. Bin Du, with a Ph.D. in Engineering Thermophysics and an M.S. in Refrigeration and Cryogenics from Southeast University, China, brings a wealth of expertise to the realms of energy and environmental engineering. Currently affiliated with Southeast University, his research delves into heat transfer, solar energy utilization, computational fluid dynamics, and the integration of artificial intelligence in engineering. With a robust skill set encompassing Python, JavaScript, HTML, CSS, R, GIS, SQL, and various statistical and machine learning methods, Dr. Du is a versatile researcher contributing significantly to the advancement of sustainable technologies.

Professional Profile:

Scopus

🌟 Education:

  • Ph.D. in Engineering Thermophysics from Southeast University, China (2007)
  • M.S. in Refrigeration and Cryogenics from Southeast University, China (2002)

πŸ’Ό Experience:

Dr. Du Bin has extensive experience in research and academia, contributing significantly to various projects related to energy and environmental engineering. Currently affiliated with Southeast University, he has been involved in several research projects focusing on heat transfer, solar energy utilization, and thermal engineering. Additionally, he has served as a reviewer for prestigious academic journals and has contributed to research reports and publications.

πŸ”¬ Research Focus:

Dr. Du’s research interests include heat transfer, solar energy utilization, computational fluid dynamics, and artificial intelligence applications in engineering.

πŸ“š Skills:

His expertise spans across Python, JavaScript, HTML, CSS, R, GIS, SQL, and various statistical and machine learning methods.

Scopus Metrics:

  • πŸ“Β Publications: 16 documents indexed in Scopus.
  • πŸ“ŠΒ Citations: A total of 297 citations for his publications, reflecting the widespread impact and recognition of Mr. Bin Du’s research within the academic community.

Publications Top Notes :

  1. Comparative study of modelling the thermal efficiency of a novel straight through evacuated tube collector with MLR, SVR, BP and RBF methods
    • Published in Sustainable Energy Technologies and Assessments in 2021.
    • Contributors: Du, B., Lund, P.D., Wang, J., Kolhe, M., Hu, E.
    • Cited by 22 articles.
  2. Combining CFD and artificial neural network techniques to predict the thermal performance of all-glass straight evacuated tube solar collector
    • Published in Energy in 2021.
    • Contributors: Du, B., Lund, P.D., Wang, J.
    • Cited by 23 articles.
  3. Straight-through all-glass evacuated tube solar collector for low and medium temperature applications
    • Published in Solar Energy in 2020.
    • Contributors: Gong, J.-H., Jiang, Z., Luo, X.-F., Wang, J., Lund, P.D.
    • Cited by 25 articles.
  4. An experimental platform for heat pipe solar collector testing
    • Published in Renewable and Sustainable Energy Reviews in 2013.
    • Contributors: Du, B., Hu, E., Kolhe, M.
    • Cited by 44 articles.
  5. Performance analysis of water cooled concentrated photovoltaic (CPV) system
    • Published in Renewable and Sustainable Energy Reviews in 2012.
    • Contributors: Du, B., Hu, E., Kolhe, M.
    • Cited by 150 articles.