Reprint

Recent Advancements in Sustainable Solar Photovoltaic Power Technology

Edited by
October 2023
404 pages
  • ISBN978-3-0365-8955-8 (Hardback)
  • ISBN978-3-0365-8954-1 (PDF)

This book is a reprint of the Special Issue Recent Advancements in Sustainable Solar Photovoltaic Power Technology that was published in

Business & Economics
Environmental & Earth Sciences
Social Sciences, Arts & Humanities
Summary

Energy plays a decisive role in realizing the Sustainable Development Goals (SDGs), such as employment growth, industry, innovation, and infrastructure, sustainable cities and communities, clean energy, and climate change. This reprint, titled “Recent Advancements in Sustainable Solar Photovoltaic Power Technology”, presents significant works in the field of solar photovoltaic systems and critical issues in solar power generation technology, as well as the latest achievements and current problems in solar power generation technology and proposing corresponding solutions to key technical challenges in the utilization of solar power, pointing out future directions for achieving the SDGs through solar power generation technology.This reprint provides a variety of comprehensive reviews on solar power generation technologies like maximum power point tracking (MPPT) techniques, power electronic converter topologies, and parameter estimation of PV cells. Along with reviews, this book also outlines the latest developments in the field of MPPTs, converters, cooling systems, rooftop, as well as grid-connected PV systems. This reprint will serve as a reference and update for academics, researchers, and practicing engineers to inspire new research and developments that pave the way for next-generation PV systems for residential and small commercial applications.This reprint includes three reviews and twelve articles focused on solar photovoltaic power technology. 

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
brushless DC motor (BLDC); maximum peak point tracking (MPPT); photovoltaic (PV) systems; electric vehicle (EV) applications; marine predator algorithm (MPA); PV model; parameter extraction; metaheuristic; current-mode control; photovoltaic system; bifurcations diagrams and Lyapunov exponent graphics; Runge–Kutta method; Matlab and PSIM software; DC-DC converters; inverted output voltage; electric vehicles; hybrid systems; non-isolated converters; Cuk converter; Mahafzah converter; continuous current mode; building-integrated photovoltaics; roof-integrated photovoltaics; photovoltaic module temperature; building-integrated photovoltaic system temperature; three-phase interleaved parallel bidirectional converter; electric vehicle; output voltage stability; power quality; high-order sliding-mode control; constant power load; GPI observer; algorithm; GA; PSO; PSO–LSTM; search space; energy analysis; microgrid; photovoltaic cell; deep learning; distributed power generation; multi-population; HGTO-BWO; parameters estimation; PV cell/panel; photovoltaic; MPPT; partial shading; global peak; MPPT classification; horse herd optimization; adaptive fractional order PID controller; sensitivity analysis; power quality and quantity analysis; maximum power point tracking; power loss; photovoltaic system; shading scenarios; fill factor; improved Su-Do-Ku; mismatch loss; maximum power point tracking; photovoltaic generation; butterfly optimization algorithm; particle swarm optimization; partial shading conditions; solar energy; panel cooling systems; multi-criteria evaluation; Visual PROMETHEE; Renewable Energy Sources (RESs); Photovoltaic (PV) systems; Switched Capacitor (SC); Reduced Switch Count Multilevel Inverter (RSC-MLI); Common Ground Switched-Capacitor (CGSC); Reliability