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PHOTOVOLTAIC (PV) SYSTEM DELIVERY AS RELIABLE ENERGY INFRASTRUCTURE A practical guide to improving photovoltaic power plant lifecycle performance and output Photovoltaic (PV) System Delivery as Reliable Energy Infrastructure introduces a Preemptive Analytical Maintenance (PAM) for photovoltaic systems engineering, and the RepoweringTM planning approach, as a structured integrated system delivery process. A team of veteran photovoltaics professionals delivers a robust discussion of the lessons learned from mature industries—including PV, aerospace, utilities, rail, marine, and automotive—as applied to the photovoltaic industry. The book offers real-world “technical and fiscal” examples of the impact of photovoltaics to all stakeholders during the concept, specification, operations, maintenance, and RepoweringTM phases. In each chapter, readers will learn to develop RAMS specifications, reliability data collection, and tasks while becoming familiar with the inherent benefits of how these affect the cost of design and development, maintenance, spares, and systems operation. The authors also explain when and how to consider and implement RepoweringTM, plant upgrades and the considerations from concept through retirement and disposal of the plant. Readers will also find: A thorough introduction to Preemptive Analytical Maintenance (PAM), including systems engineering, lifecycle planning, risk management, risk assessment, risk reduction, as compared to the historic utility models, An in-depth treatment of the modern photovoltaic industry, including economic factors and the present endlessly evolving state of technology, Constructive discussions and application of systems engineering, including RAMS and System Engineering practices and solutions, Extensive explorations and application of data collection, curation, and analysis for PV systems, including advanced sensor technologies. Perfect for all new through to experienced photovoltaic design and specification engineers, photovoltaic plant owners, operators, PV asset managers and all interested stakeholders. Photovoltaic (PV) System Delivery as Reliable Energy Infrastructure will also earn a place in the libraries of utilities, engineering, procurements, construction professionals and students.
PHOTOVOLTAIC (PV) SYSTEM DELIVERY AS RELIABLE ENERGY INFRASTRUCTURE A practical guide to improving photovoltaic power plant lifecycle performance and output Photovoltaic (PV) System Delivery as Reliable Energy Infrastructure introduces a Preemptive Analytical Maintenance (PAM) for photovoltaic systems engineering, and the RepoweringTM planning approach, as a structured integrated system delivery process. A team of veteran photovoltaics professionals delivers a robust discussion of the lessons learned from mature industries—including PV, aerospace, utilities, rail, marine, and automotive—as applied to the photovoltaic industry. The book offers real-world “technical and fiscal” examples of the impact of photovoltaics to all stakeholders during the concept, specification, operations, maintenance, and RepoweringTM phases. In each chapter, readers will learn to develop RAMS specifications, reliability data collection, and tasks while becoming familiar with the inherent benefits of how these affect the cost of design and development, maintenance, spares, and systems operation. The authors also explain when and how to consider and implement RepoweringTM, plant upgrades and the considerations from concept through retirement and disposal of the plant. Readers will also find: A thorough introduction to Preemptive Analytical Maintenance (PAM), including systems engineering, lifecycle planning, risk management, risk assessment, risk reduction, as compared to the historic utility models, An in-depth treatment of the modern photovoltaic industry, including economic factors and the present endlessly evolving state of technology, Constructive discussions and application of systems engineering, including RAMS and System Engineering practices and solutions, Extensive explorations and application of data collection, curation, and analysis for PV systems, including advanced sensor technologies. Perfect for all new through to experienced photovoltaic design and specification engineers, photovoltaic plant owners, operators, PV asset managers and all interested stakeholders. Photovoltaic (PV) System Delivery as Reliable Energy Infrastructure will also earn a place in the libraries of utilities, engineering, procurements, construction professionals and students.
This study presents options to fully unlock the world’s vast solar PV potential over the period until 2050. It builds on IRENA’s global roadmap to scale up renewables and meet climate goals.
A reliable, accessible and comprehensive guide for students of photovoltaic applications and renewable energy engineering. This thoroughly considered textbook from a group of leading influential and award-winning authors is brimming with information and is carefully designed to meet the needs of its readers. Along with exercises and references at the end of each chapter, the book features a set of detailed technical appendices that provide essential equations, data sources and standards. Starting from basics with 'The Characteristics of Sunlight' the reader is guided step-by-step through semiconductors and p-n junctions; the behaviour of solar cells; cell properties ad design; and PV cell interconnection and module fabrication. The book covers stand-alone photovoltaic systems; specific purpose photovoltaic systems; remote are power supply systems; and grid-connected photovoltaic systems. There is also a section on photovoltaic water pumping system components and design. Applied Photovolatics is well illustrated and readable with an abundance of diagrams and illustrations, and will provide the reader with all the information needed to start working with photovoltaics.
This book covers the various aspects of solar photovoltaic systems including measurement of solar irradiance, solar photovoltaic modules, arrays with MATLAB implementation, recent MPPT techniques, latest literature of converter design (with MATLAB Simulink models), energy storage for PV applications, balance of systems, grid integration of PV systems, PV system protection, economics of grid connected PV system and system yield performance using PV system. Challenges, issues and solutions related to grid integration of solar photovoltaic systems are also be dealt with.
Electricity from Sunlight, hochgelobt für seine ansprechende Gestaltung, seinen verständlichen Stil und seine klaren Erklärungen komplexer Sachverhalte ohne viel Mathematik, wurde gründlich überarbeitet und aktualisiert. Das Buch beschreibt die Fortschritte auf dem weltweiten Photovoltaik-Markt, bei der Wirtschaftlichkeit und Installationsbasis. Kernaspekte der 2. Auflage: - Aktuelles zu den Fortschritten der Photovoltaik, relevantes neues Material zu netzgekoppelten Systemen. - Noch detailliertere Erläuterung der wissenschaftlichen Prinzipien der Photovoltaik, von Solarzellen, Modulen und Systemen. - Aktuelle Informationen aus dem Photovoltaik-Markt, inkl. Umwandlungseffizienz und Ausbau netzfreundlicher Kraftwerke. - Fragen am Ende der Kapitel unterstützen Dozenten und Studenten durch Anleitungen zum Selbststudium. - Neue Kapitel zu Fertigungsprozessen, Materialien und der Verfügbarkeit sonstiger Ressourcen. - Neuer Abschnitt zu Photovoltaik-Großanlagen mit Informationen zur Ausweitung der globalen Kapazität, zu Photovolatik-Großanlagen und erschwinglichen Lösungen zur Bewältigung fluktuierenden Einspeisung von Energie. - Systemanalyse neuer Anwendungen im Bereich günstiger Photovoltaik-Anlagen wie bei der Energiespeicherung und Wasserentsalzung. - Erheblich umfangreicher Abschnitt zu Wirtschaftlichkeit und Umweltaspekten mit Erläuterungen zu den Energiekosten im Vergleich zu den Investitionskosten, ROI und Lebenszyklusanalyse. Die 2. Auflage von Electricity from Sunlight: Photovoltaics Systems Integration and Sustainability ist eine Einführung in die Photovoltaik, richtet sich an Einsteiger, die die Grundlagen von kompletten Photovoltaiksystemen verstehen möchten, sowie an Studenten im Grund- und Hauptstudium in Kursen zu erneuerbarer Energie und Photovoltaik. Es behandelt in einzigartiger Weise die Nachhaltigkeit neuer umwälzender Technologien und ist sowohl für Systemanalysten als auch Strategen in der Energiepolitik gut geeignet.
The new edition of this thoroughly considered textbook provides a reliable, accessible and comprehensive guide for students of photovoltaic applications and renewable energy engineering. Written by a group of award-winning authors it is brimming with information and is carefully designed to meet the needs of its readers. Along with exercises and references at the end of each chapter, it features a set of detailed technical appendices that provide essential equations, data sources and standards. The new edition has been fully updated with the latest information on photovoltaic cells, modules, applications and policy. Starting from basics with 'The Characteristics of Sunlight' the reader is guided step-by-step through semiconductors and p-n junctions; the behaviour of solar cells; cell properties and design; and PV cell interconnection and module fabrication. The book covers stand-alone photovoltaic systems; specific purpose photovoltaic systems; remote area power supply systems; grid-connected photovoltaic systems and water pumping. Applied Photovoltaics is highly illustrated and very accessible, providing the reader with all the information needed to start working with photovoltaics.
Solar power has become big business, with $131 billion invested in 2018, up from just $11.2 billion in 2004 but down from $171 billion in 2017 as unit costs fell. New installed capacity grew from 1.1GW in 2004 to about 107GW in 2018, a steady rise as solar begins to compete with fossil fuels on cost and to be built in nearly every country.This is a book for the solar workers of the future, a business book for those without a business or economics background and those simply curious about major shifts happening in the world energy economy. Key financial, economic and technical concepts are interspersed with the history of the first decade of cheap solar power, and the author's experience of being part of a successful startup in the clean energy sector.Related Link(s)
With the explosive growth in PV (photovoltaic) installations globally, the sector continues to benefit from important improvements in manufacturing technology and the increasing efficiency of solar cells, this timely handbook brings together all the latest design, layout and construction methods for entire PV plants in a single volume. Coverage includes procedures for the design of both stand-alone and grid-connected systems as well as practical guidance on typical operational scenarios and problems encountered for optimum PV plant performance. This comprehensive resource will benefit electrical engineer and other electrical professionals in PV systems, especially designers and installers of PV plants or the product manufacturing and testing supply chain. Advanced students on renewable energy courses will find this useful background reading and it will be an invaluable desk reference for PV plant builders and owners.
This second edition book details how to design reliable solar photovoltaic power generation systems from a residential system, progressing to a commercial system, and finishing at the largest utility power generation systems. By following the guidelines in this book and your local solar photovoltaic electrical codes, you will be able to design solar power systems that give many years of reliable operation. When designed well, solar photovoltaic power generation is an excellent source of electrical power that results in much lower electricity bills, the power company will even refund you for the excess energy generated by your system if it is large enough. Building a grid tied solar power system is a relatively easy task. Given the large amount of government and electrical utility financial incentives that are available, it is a great time to join in the solar power revolution that is taking place in the world today. This book is also incorporated into "Complete Solar Photovoltaics for Residential, Commercial, and Utility Systems".