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Advances in Electrical Systems and Innovative Renewable Energy Techniques: The Proceedings of the International Conference on Electrical Systems and … in Science, Technology & Innovation)-电子书百科大全

Advances in Electrical Systems and Innovative Renewable Energy Techniques: The Proceedings of the International Conference on Electrical Systems and … in Science, Technology & Innovation)

Advances in Electrical Systems and Innovative Renewable Energy Techniques: The Proceedings of the International Conference on Electrical Systems and … in Science, Technology & Innovation)
by: Mohamed Bendaoud (Editor),Amine El Fathi(Editor),Farhad Ilahi Bakhsh(Editor),Siano Pierluigi(Editor)&1more
Publisher: Springer
Edition: 2024th
Publication Date: 4 April 2024
Language: English
Print Length: 247 pages
ISBN-10: 3031497716
ISBN-13: 9783031497711
Book Description
This edited book on “Advances in Electrical Systems and Innovative Renewable Energy Techniques” is an outcome of the selected papers presented at the International Conference on Electrical Systems & Automation, (ICESA 2023) held from 29 to 30, May 2023 at the Faculty of Sciences and technologies, Al Hoceïma, Morocco.This edited book is divided into 2 volumes. This volume will be divided into 3 parts, each devoted to distinct yet interconnected aspects of the subject matter.The first part focuses on various advancements in renewable energy techniques. It explores topics ranging from biomass combustion characteristics and hydrogen production using photovoltaics to the assessment of wave energy potential and the performance evaluation of solar collectors. These research papers not only shed light on the current state-of-the-art technologies but also offer valuable insights into their implementation, efficiency, and potential impact on the energy landscape.The second part focuses on interdisciplinary approaches between electrical and renewable energy systems and includes research chapters on photovoltaic (PV) energy, wind energy, and microgrid systems.For PV systems, several topics and issues are addressed such as modeling of PV systems using single diode model and double diode model; analytical and numerical methods for extraction of PV parameters; extraction of maximum power from PV system using integral SMC strategy, sun-pointing orientation, SuDoKu, and ANN algorithms; and fault detection and classification based on metaheuristic technique, and feedforward neural network.For the wind system, its modeling is first discussed, and then the control of the wind system using direct power, PI, fuzzy logic, sliding mode, and time delay strategies is analyzed.In the third part, the chapters focus on efficient energy management, optimization of microgrids, and the use of advancedtechnologies to improve energy performance. Researchers present innovative solutions to address the challenges of energy efficiency, grid responsiveness, and the integration of new energy sources.

About the Author

From the Back Cover This edited book on “Advances in Electrical Systems and Innovative Renewable Energy Techniques” is an outcome of the selected papers presented at the International Conference on Electrical Systems & Automation, (ICESA 2023) held from 29 to 30, May 2023 at the Faculty of Sciences and technologies, Al Hoceïma, Morocco.This edited book is divided into 2 volumes. This volume will be divided into 3 parts, each devoted to distinct yet interconnected aspects of the subject matter.The first part focuses on various advancements in renewable energy techniques. It explores topics ranging from biomass combustion characteristics and hydrogen production using photovoltaics to the assessment of wave energy potential and the performance evaluation of solar collectors. These research papers not only shed light on the current state-of-the-art technologies but also offer valuable insights into their implementation, efficiency, and potential impact on the energy landscape.The second part focuses on interdisciplinary approaches between electrical and renewable energy systems and includes research chapters on photovoltaic (PV) energy, wind energy, and microgrid systems.For PV systems, several topics and issues are addressed such as modeling of PV systems using single diode model and double diode model; analytical and numerical methods for extraction of PV parameters; extraction of maximum power from PV system using integral SMC strategy, sun-pointing orientation, SuDoKu, and ANN algorithms; and fault detection and classification based on metaheuristic technique, and feedforward neural network.For the wind system, its modeling is first discussed, and then the control of the wind system using direct power, PI, fuzzy logic, sliding mode, and time delay strategies is analyzed.In the third part, the chapters focus on efficient energy management, optimization of microgrids, and the use of advanced technologies to improve energy performance. Researchers present innovative solutions to address the challenges of energy efficiency, grid responsiveness, and the integration of new energy sources. About the Author Pr. BENDAOUD Mohamed received the M.Sc. and Ph.D. degrees in Electrical Engineering from Cadi Ayyad University, Marrakech, Morocco, in 2012 and 2019, respectively. He is currently an associate professor at National School of Applied Sciences (ENSA) of Khouribga, Sultan Moulay Slimane University-Morocco.He has published over 15 papers (book chapters, international journals, and conferences/workshops), and 3 edited books. He is the founder and General Chair of the International Conference on Electrical Systems & Automation. He has served and continues to serve on the technical program committees and as reviewer of numerous international conferences and journals such as Journal of The Franklin Institute, Mechatronic Systems and Control. He is the editor-in-chief of the new ambitious ”journal of electrical systems & automation” (JESA). He is the deputy director of the science and technology laboratory for engineers.His research interests include: Modelling and control of Grid Connection for Photovoltaic and Wind Energy; Modelling and simulation methodologies for multidisciplinary systems, in particular Bond Graph-based; Control of power converters.

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