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Renewable Energy for Sustainable Growth Assessment
About this book
Written and edited by a team of experts in the field, this collection of papers reflects the most up-to-date and comprehensive current state of renewable energy for sustainable growth assessment and provides practical solutions for engineers and scientists.
Renewable energy resources (RERs) are gaining more attention in academia and industry as one of the preferred choices of sustainable energy conversion. Due to global energy demand, environmental impacts, economic needs and social issues, RERs are encouraged and even funded by many governments around the world. Today, researchers are facing numerous challenges as this field emerges and develops, but, at the same time, new opportunities are waiting for RERs utilization in sustainable development all over the globe.
Efficient energy conversion of solar, wind, biomass, fuel cells, and other techniques are gaining more popularity and are the future of energy. The present book cross-pollinates recent advances in the study of renewable energy for sustainable growth. Various applications of RERs, modeling and performance analysis, grid integration, soft computing, optimization, artificial intelligence (AI) as well as machine and deep learning aspects of RERs are extensively covered. Whether for the veteran engineer or scientist, the student, or a manager or other technician working in the field, this volume is a must-have for any library.
This outstanding new volume
- Assesses the current and future need for energy on a global scale and reviews the role of renewable energy
- Includes multiple chapters on biomass and bioenergy
- Also includes multiple chapters on solar energy and PVs
- Also includes chapters on fuel cells, wind power, and many other topics
- Covers the design and implementation of power electronics for energy systems
- Outlines best practices and the state of the art for renewable energy with regard to sustainability
Audience: Engineers, scientists, technicians, managers, students, and faculty working in the field of renewable energy, sustainability and power system
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Information
Table of contents
- Cover
- Half-Title Page
- Series Page
- Title Page
- Copyright Page
- Contents
- Preface
- 1 Biomass as Emerging Renewable: Challenges and Opportunities
- 2 Assessment of Renewable Energy Technologies Based on Sustainability Indicators for Indian Scenario
- 3 A Review of Biomass Impact and Energy Conversion
- 4 Power Electronics for Renewable Energy Systems
- 5 Thermal Performance Studies of an Artificially Roughened Corrugated Aluminium Alloy (AlMn1Cu) Plate Solar Air Heater (SAH) at
- 6 An Overview of Partial Shading on PV Systems
- 7 Optical Modeling Techniques for Bifacial PV
- 8 Intervention of Microorganisms for the Pretreatment of Lignocellulosic Biomass to Extract the Fermentable Sugars for Biofuel Production
- 9 Biomass and Bioenergy: Resources, Conversion and Application
- 10 Renewable Energy Development in Africa: Lessons and Policy Recommendations from South Africa, Egypt, and Nigeria
- 11 Sustainable Development of Pine Biocarbon Derived Thermally Stable and Electrically Conducting Polymer Nanocomposite Films
- 12 Power Electronics for Renewable Energy Systems
- 13 Fuel Cells for Alternative and Sustainable Energy Systems
- 14 Fuel Cell Utilization for Energy Storage
- 15 Miniature Hydel Energy Harvesting Unit to Power Auto Faucet and Lighting Systems for Domestic Applications
- 16 Modeling, Performance Analysis, Impact Study and Operational Paradigms of Solar Photovoltaic Power Plant
- 17 A Review on Control Technologies and Islanding Issues in Microgrids
- 18 A Review of Microgrid Protection Schemes Resilient to Weather Intermittency and DER Faults
- 19 Theories of Finance for Generation Portfolio Optimization
- 20 Variable Speed Permanent Magnet Synchronous Generator-Wind Energy Systems
- 21 Study of Radiant Cooling System with Parallel Desiccant Based Dedicated Outdoor Air System with Solar Regeneration
- Index
- Also of Interest
- EULA