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  • © 2017

Design and Power Quality Improvement of Photovoltaic Power System

  • Proposes an approach for the optimum design of rooftop grid-connected photovoltaic system installation
  • Presents a comprehensive small signal MATLAB/Simulink model for the DC-DC converter operated under continuous conduction mode
  • Shows the installation improvements on a building in Egypt as a case study
  • Includes supplementary material: sn.pub/extras

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Table of contents (6 chapters)

  1. Front Matter

    Pages i-xxiii
  2. Introduction and Background of PV Systems

    • Adel A. Elbaset, M. S. Hassan
    Pages 1-18
  3. Literature Review

    • Adel A. Elbaset, M. S. Hassan
    Pages 19-26
  4. Optimum Design of Rooftop Grid-Connected PV System

    • Adel A. Elbaset, M. S. Hassan
    Pages 27-71
  5. Power Quality Improvement of PV System

    • Adel A. Elbaset, M. S. Hassan
    Pages 73-95
  6. Small-Signal MATLAB/Simulink Model of DC–DC Buck Converter

    • Adel A. Elbaset, M. S. Hassan
    Pages 97-114
  7. Conclusions and Recommendations for Future Work

    • Adel A. Elbaset, M. S. Hassan
    Pages 115-116
  8. Back Matter

    Pages 117-138

About this book

This book presents a case study on a new approach for the optimum design of rooftop, grid-connected photovoltaic-system installation. The study includes two scenarios using different brands of commercially available PV modules and inverters. It investigates and compares several different rooftop grid-connected PV-system configurations taking into account PV modules and inverter specifications. The book also discusses the detailed dynamic MATLAB/Simulink model of the proposed rooftop grid-connected PV system, and uses this model to estimate the energy production capabilities, cost of energy (COE), simple payback time (SPBT) and greenhouse gas (GHG) emissions for each configuration.

The book then presents a comprehensive small signal MATLAB/Simulink model for the DC-DC converter operated under continuous conduction mode (CCM). First, the buck converter is modeled using state-space average model and dynamic equations, depicting the converter, are derived. Then a detailed MATLAB/Simulink model utilizing SimElectronics® Toolbox is developed. Lastly, the robustness of the converter model is verified against input voltage variations and step load changes.

Authors and Affiliations

  • Department of Electrical Engineering, Faculty of Engineering, Minia University, El-Minia, Egypt

    Adel A. Elbaset , M. S. Hassan

About the authors

Adel A. Elbaset was born in Nag Hammadi, Qena, Egypt in 1971. He received his B.S., M.Sc. and Ph.D. from the Department of Electrical Engineering at Minia University, Egypt, in 1995, 2000 and 2006, respectively. He joined the Faculty of Engineering there in 2006 and is currently an associate professor in power electronics. Dr. Adel is also Executive Manager of the university’s Advanced Lab. for Electric Power Systems and was the Head of the Department of Science and Renewable Energy Engineering at Beni-Suef University’s Faculty of Postgraduate Studies for Advanced Science. His research interests are in the area of renewable energy sources, power electronics, power system protection and control, power quality and harmonics, neural network and fuzzy systems.

M. S. Hassan was born in Abu Qurqas, Minia, Egypt in 1988. He received his B.S. and M.Sc. from the Department of Electrical Engineering, Minia University, Egypt in 2010 and 2016, respectively. He has been a member of the Faculty of Engineering there since 2011 and also works as a technical engineer at the university’s Advanced Lab. for Electric Power Systems. His research interests are in the area of renewable energy, high-voltage direct current (HVDC), power electronics, power quality and harmonics.

 

Bibliographic Information

  • Book Title: Design and Power Quality Improvement of Photovoltaic Power System

  • Authors: Adel A. Elbaset , M. S. Hassan

  • DOI: https://doi.org/10.1007/978-3-319-47464-9

  • Publisher: Springer Cham

  • eBook Packages: Energy, Energy (R0)

  • Copyright Information: Springer International Publishing AG 2017

  • Hardcover ISBN: 978-3-319-47463-2Published: 02 December 2016

  • Softcover ISBN: 978-3-319-83742-0Published: 05 July 2018

  • eBook ISBN: 978-3-319-47464-9Published: 24 November 2016

  • Edition Number: 1

  • Number of Pages: XXIII, 138

  • Number of Illustrations: 14 b/w illustrations, 77 illustrations in colour

  • Topics: Energy Efficiency, Power Electronics, Electrical Machines and Networks, Circuits and Systems, Energy Systems

Buy it now

Buying options

eBook USD 89.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 119.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 119.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access