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Solar Photovoltaics: Technology, System Design, Reliability and Viability

Autor N.D. Kaushika, Anuradha Mishra, Anil K. Rai
en Limba Engleză Hardback – 19 mar 2018
This book presents a quantitative description of the physics of solar-cell materials, transport processes, fabrication methods, and offers a scientific understanding of the technology involved. It also presents the current knowledge of the electrical characteristics of modules arrays and balance of systems (BOS) for a wide spectrum of applications. It particularly focuses on solar-powered communication systems and building integrated photovoltaic (BIPV) systems, exploring the reliability and viability aspects in detail. The book is of interest to application engineers, practitioners in private and government agencies, as well as graduate and postgraduate students.
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Specificații

ISBN-13: 9783319724034
ISBN-10: 3319724037
Pagini: 165
Ilustrații: XI, 167 p. 82 illus., 7 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.45 kg
Ediția:1st ed. 2018
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

1. Introduction to Solar Photovoltaic Power.-  2. Solar Radiation Characteristics.- 3. Fundamentals of Photovoltaic Generation: A Review.- 4. Wafer Based Solar Cells: Materials and Fabrication Technologies.-  5. Mathematical Model of Transport Processes.- 6. Electrical Characteristics of Solar Cells.- 7. Solar PV Module and Array Network.- 8. BOS and Electronic Regulations.- 9. Repertoires of Applications.- 10. Solar Photovoltaic System Design.- 11. System Reliability Considerations.- 12. High Performance Solar Cells.-13. Solar PV System Economics.- References.- Index.

Notă biografică

N.D. Kaushika (Ph.D) is a specialist in renewable energy and environment, and was a professor at the Centre for Energy Studies, Indian Institute of Technology Delhi, before becoming a director of leading engineering institutions in Delhi and the National Capital Region. He received the S.S. Bhatnagar Research Endowment Award (Hariom Ashram Prerit) for research in energy conservation in 1987. He was involved in the establishment of several research centres in engineering colleges, has authored five books, published articles in several respected journals as well as authored chapters in books that were published by international publishers such as Academic Press, USA and Elsevier.

Anuradha Mishra (Ph.D) joined the Centre for Energy Studies, IIT Delhi, and obtained her Ph.D in 2004, specialising in “Modelling and Simulation of Solar Power Systems”. She currently teaches both graduate and postgraduate courses at the National Institute of Technology Calicut (NITC) where she is also an independent researcher.
Anil K. Rai (Ph.D) was awarded his Ph.D from IIT Delhi in 2008. He was a co-investigator in the Government-of-India-sponsored research projects on Solar Photovoltaics at the Department of Science of Technology. Prof. Rai currently works at the Department of Electrical & Electronics Engineering at the Ajay Kumar Garg Engineering College affiliated to Dr. A.P.J. Abdul Kalam Technical University, Lucknow. He has published several articles in international journals. His areas of interest are modelling and simulation of renewable energy systems, system engineering and electrical power quality.


Textul de pe ultima copertă

This book presents a quantitative description of the physics of solar-cell materials, transport processes, fabrication methods, and offers a scientific understanding of the technology involved. It also presents the current knowledge of the electrical characteristics of modules arrays and balance of systems (BOS) for a wide spectrum of applications. It particularly focuses on solar-powered communication systems and building integrated photovoltaic (BIPV) systems, exploring the reliability and viability aspects in detail. The book is of interest to application engineers, practitioners in private and government agencies, as well as graduate and postgraduate students.

Caracteristici

Equips the reader to handle complex modelling and simulation problems Reinforces basic principles with modelling and simulation Maximizes insights into the physical processes in solid-state devices Illustrates the complete power system design process