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Dr. Mousa Marzband- Intelligent Energy System Design Lead and his research group at Net Zero Industry Innovation Centre (NZIIC) have established an impressive track record in decision-making approaches for short-term/ long-term scheduling/ planning in integrated energy networks and the application of power systems in smart grids. Dr. Marzband has been involved in various international and national research projects, earning him recognition for his expertise and leadership in the field. He has served as a principal investigator and scientific coordinator for projects selected through competitive peer review processes. His contributions to these projects have been instrumental in driving innovation and achieving notable outcomes in the field of electrical energy engineering. This is evident from his extensive research publications and collaborations with renowned institutions such as the University of Manchester and Northumbria University in the UK, IREC in Spain, and University College Cork in Ireland. His publications primarily focus on the application of advanced methods (e.g., game theory) in energy management systems and power electronics in power system applications, which is the main subject of his proposals. In addition to his research contributions, Dr. Marzband has actively engaged with professional organizations and conferences. He has served as an Associate Editor for esteemed journals such as the IEEE System Journal and as an Editor for renowned publications focusing on smart cities. Dr. Marzband has also been invited as a Guest Editor for several Special Sections in reputable journals such as IEEE Transaction on Industry Application, showcasing his expertise in topics such as smart energy systems, demand response, and renewable energy optimization. Dr. Marzband's commitment to knowledge dissemination extends beyond his academic pursuits. He has held various leadership roles, including chairing technical committees and organizing committees for prominent conferences and symposiums. His efforts in organizing and moderating technical tracks have facilitated the exchange of ideas and the advancement of research in areas such as power systems, smart grids, and renewable energy. Dr. Marzband is a distinguished member of the IET and a Chartered Engineer (CEng). He also serves as a Senior Member of the Technical Committee of Renewable Energy Systems and the IEEE Task Force on Micro-grid Stability, Analysis, and Modelling. In recognition of his contributions, Thomson Reuters has also recognized him as one of the world's top 1% researchers in engineering. Dr. Marzband's exemplary cooperative skills and ability to supervise Ph.D. students have led to the publication of numerous reputable research papers. These publications have garnered significant attention within the research community, with an impressive citation count of more than 7300 (H-index: 45, i10-index: 118) since 2014 (google scholar). Through his previous grant, funded by the British Council (£186k) as a Co-Investigator, Dr. Marzband has gained extensive experience in designing power electronic topologies and smart controllers for energy storage and electric vehicles in home micro-grids (it also can be considered charging station), including renewable-based technologies. Additionally, he has recently received a new grant (£110k), partially funded by Otaski Energy Solutions (£20k), for the PhD project titled "Optimal Security-Constrained Charging Network Design for the Future E-Mobility Ecosystem to Improve Network Stability." Furthermore, he has secured the QNRF-NATIONAL PRIORITY RESEARCH PROGRAM (NPRP13S-108-200028) entitled "Impact Assessment of EV Charging Stations and Regulation Policies for the Upcoming Active Distribution Network of Qatar Utility Grid" with a funding of approximately £600k for the period 2021-2024. Moreover, his grant application titled "Efficient Smart Home Energy Management with Emphasis on Electrical Vehicles' Charging/Discharging Strategy" (~$200k) has recently been accepted by QU GA GRANT APPLICATION 2021. Dr. Marzband's proposal "Electric Vehicles pOint Location Optimization via VEhicular Communications (EVOLVE)" has secured funding of £620k from the MARIE SKLODOWSKA-CURIE ACTIONS staff exchange program for the period 2022-2026. Additionally, as PI, his proposal titled "Optimal Scheduling of Electric Vehicle-Integrated Multi-Energy System with High Renewable Generation" has been accepted under the DTE Network+ founded by EPSRC grant reference EP/S032053/1. Moreover, he has received funding from Innovate UK (~£300k) for his grant proposal titled "Bi-directional MIMO DC/DC Converter for V2G/X Infrastructures" in collaboration with Otaski ES. This funding will facilitate the development and experimental implementation of the next generation of power electronic devices, aiming to enhance V2G capabilities for future charging stations.
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Journal of Energy Storage (2024): 111342
IET Smart Gridno. 3 (2024): 187-190
IEEE TRANSACTIONS ON SUSTAINABLE ENERGYno. 1 (2024): 398-413
2024 IEEE Texas Power and Energy Conference (TPEC)pp.1-6, (2024)
SUSTAINABLE ENERGY GRIDS & NETWORKS (2024): 101309
SUSTAINABLE CITIES AND SOCIETY (2024): 105107
Springer Proceedings in Energy IGEC Transactions, Volume 1: Energy Conversion and Managementpp.227-243, (2024)
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