Design and power quality improvement of photovoltaic power system / Adel A. Elbaset, M.S. Hassan.
2017
TK1087
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Details
Title
Design and power quality improvement of photovoltaic power system / Adel A. Elbaset, M.S. Hassan.
Author
Elbaset, Adel A., author.
ISBN
9783319474649 (electronic book)
3319474642 (electronic book)
9783319474632
3319474634
3319474642 (electronic book)
9783319474632
3319474634
Publication Details
Cham : Springer, ©2017.
Language
English
Description
1 online resource (xxiii, 137 pages)
Call Number
TK1087
Dewey Decimal Classification
621.31244
Summary
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.
Bibliography, etc. Note
Includes bibliographical references.
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Access limited to authorized users.
Source of Description
Description based on print version record.
Added Author
Hassan, M. S., author.
Available in Other Form
Power Quality Improvement of Photovoltaic Power System.
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Table of Contents
Introduction and Background of Pv Systems
Literature Review
Optimum Design of Rooftop Grid-Connected Pv System
Power Quality Improvement of Pv System
Small-Signal Matlab/Simulink Model of Dc-Dc Buck Converter
Conclusions and Recommendations for Future Work.
Literature Review
Optimum Design of Rooftop Grid-Connected Pv System
Power Quality Improvement of Pv System
Small-Signal Matlab/Simulink Model of Dc-Dc Buck Converter
Conclusions and Recommendations for Future Work.