
Advances in Renewable Energies and Power Technologies
Volume 2: Biomass, Fuel Cells, Geothermal Energies, and Smart Grids
- 536 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Advances in Renewable Energies and Power Technologies
Volume 2: Biomass, Fuel Cells, Geothermal Energies, and Smart Grids
About this book
Advances in Renewable Energies and Power Technologies Volume 2: Biomass, Fuel Cells, Geothermal Energies, and Smart Grids examines both the theoretical and practical elements of renewable energy sources, covering biomass, fuel cells, geothermal energy, RES, distributed energy, smart grids, and converter control. Dr. Yahyaoui and a team of expert contributors present the most up-to-date information and analysis on renewable energy generation technologies in this comprehensive resource. This volume covers the principles and methods of each technology, an analysis of their implementation, management and optimization, and related economic advantages and limitations, in addition to recent case studies and models of each technology.Advances in Renewable Energies and Power Technologies: Volume 2: Biomass, Fuel Cells, Geothermal Energies, and Smart Grids is a valuable resource for anyone working in renewable energy or wanting to learn more about theoretical and technological aspects of the most recent inventions and research in the field.- Offers a comprehensive guide to the most advanced contemporary renewable power generation technologies written by a team of top experts- Discusses power control and limitations of each technology- Includes global case studies and models to exemplify the technological possibilities and limitations of each power generation method
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Information
Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Contributors
- Preface
- Acknowledgement
- 1: Biomass: Some Basics and Biogas
- 2: Simulation Models of Biomass Thermochemical Conversion Processes, Gasification and Pyrolysis, for the Prediction of the Energetic Potential
- 3: Biomass Gasification for Power Generation Applications: A Modeling, Economic, and Experimental Study
- 4: Fuel Cells: History (Short Remind), Principles of Operation, Main Features, and Applications
- 5: On the Modeling and Control of a Photovoltaic-Fuel Cell Hybrid Energy System
- 6: Geothermal Power
- 7: Deployment of Renewable Energy Systems: Barriers, Challenges, and Opportunities
- 8: Optimal Sizing and Designing of Hybrid Renewable Energy Systems in Smart Grid Applications
- 9: Grid-Connected Microgrids: Demand Management via Distributed Control and Human-in-the-Loop Optimization
- 10: Distributed Generation Energy in Relation to Renewable Energy: Principle, Techniques, and Case Studies
- 11: Virtual Inertia for Power Converter Control
- 12: Electric and Hybrid Vehicle Drives and Smart Grid Interfacing
- 13: Machine Learning Techniques for Data Classification
- 14: Telecommunication Technologies for Smart Grids: Total Cost Optimization
- 15: Smart Manufacturing in a SoSE Perspective
- Index