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dc.contributor.authorvan Sark, Wilfried*
dc.date.accessioned2021-02-12T00:28:52Z
dc.date.available2021-02-12T00:28:52Z
dc.date.issued2019*
dc.date.submitted2019-12-09 11:49:16*
dc.identifier42672*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/57386
dc.description.abstractPhotovoltaic solar energy technology (PV) has been developing rapidly in the past decades, leading to a multi-billion-dollar global market. It is of paramount importance that PV systems function properly, which requires the generation of expected energy both for small-scale systems that consist of a few solar modules and for very large-scale systems containing millions of modules. This book increases the understanding of the issues relevant to PV system design and correlated performance; moreover, it contains research from scholars across the globe in the fields of data analysis and data mapping for the optimal performance of PV systems, faults analysis, various causes for energy loss, and design and integration issues. The chapters in this book demonstrate the importance of designing and properly monitoring photovoltaic systems in the field in order to ensure continued good performance.*
dc.languageEnglish*
dc.subjectQ1-390*
dc.subjectQC1-999*
dc.subject.classificationbic Book Industry Communication::G Reference, information & interdisciplinary subjects::GP Research & information: generalen_US
dc.subject.otherfault diagnosis*
dc.subject.othermodeling*
dc.subject.othersimulation*
dc.subject.otherfault tree analysis*
dc.subject.otherphotovoltaic system*
dc.subject.otherBartlett’s test*
dc.subject.othermetaheuristic*
dc.subject.otherpopulation density*
dc.subject.otherspatial analyses*
dc.subject.otherAC parameters*
dc.subject.otherparameter estimation*
dc.subject.otherfiber reinforced polymeric plastic (FRP)*
dc.subject.otherHartigan’s dip test*
dc.subject.otherenergy*
dc.subject.otherimage processing*
dc.subject.otherreal data*
dc.subject.otherphotovoltaic (PV) systems monitoring*
dc.subject.otherforecast*
dc.subject.otherphotovoltaic plants*
dc.subject.othersystem*
dc.subject.othergraphical malfunction detection*
dc.subject.otherdefects*
dc.subject.otherSTATCOM*
dc.subject.otherphoto-generated current*
dc.subject.otherperformance analysis*
dc.subject.otherphotovoltaic module performance*
dc.subject.othersolar energy*
dc.subject.otherurban context*
dc.subject.otherthermal interaction*
dc.subject.otherunderdamped oscillation*
dc.subject.otherreliability*
dc.subject.othermembership algorithm*
dc.subject.otherphotovoltaic systems*
dc.subject.otheravailability*
dc.subject.otherfuzzy logic controller*
dc.subject.otherANOVA*
dc.subject.othersolar farm*
dc.subject.otherenergy yield*
dc.subject.othercluster analysis*
dc.subject.otherphotovoltaics*
dc.subject.otherannual yield*
dc.subject.otherresidential buildings*
dc.subject.otherPV array*
dc.subject.otherPV system*
dc.subject.otherdc-dc converter*
dc.subject.otherquasi-opposition based learning*
dc.subject.othergrid-connected*
dc.subject.otherperformance ratio*
dc.subject.otherorganic soiling*
dc.subject.othervegetated/green roof*
dc.subject.otherconventional roof membrane*
dc.subject.otherUV-fluorescence imaging*
dc.subject.otherPV thermal performance*
dc.subject.otherPV systems*
dc.subject.otherfailure mode and effect analysis*
dc.subject.otherageing and degradation of PV-modules*
dc.subject.othersheet molding compound FRP*
dc.subject.otherJarque-Bera’s test*
dc.subject.otherTukey’s test*
dc.subject.othertechnical costs*
dc.subject.otherKruskal-Wallis’ test*
dc.subject.otherimproved cuckoo search algorithm*
dc.subject.otherPV energy performance*
dc.subject.otherpultruded FRP*
dc.subject.othercracks*
dc.subject.othermaximum power point tracking (MPPT)*
dc.subject.otherstructural design*
dc.subject.othersoftware development*
dc.subject.otherfloating PV generation structure*
dc.subject.othermalfunction detection*
dc.subject.othermodules*
dc.subject.otherphotovoltaic performance*
dc.subject.othermaximum power point*
dc.subject.otherGIS*
dc.subject.otherimpedance spectroscopy*
dc.subject.otherfloating PV systems (FPV)*
dc.subject.othersolar cells*
dc.subject.otherRenewable Energy*
dc.subject.otherloss analysis*
dc.subject.othershade resilience*
dc.subject.otherScanning Electron Microscopy (SEM)*
dc.subject.otherfailure detection*
dc.subject.otheroptimization problem*
dc.subject.otherfailure rates*
dc.subject.otherFCM algorithm*
dc.subject.otherstability analysis*
dc.subject.otherreactive power support*
dc.subject.othermooring system*
dc.subject.otherbuck converter*
dc.subject.otherMood’s Median test*
dc.subject.otherphotovoltaic modeling*
dc.subject.othermodule architecture*
dc.subject.otherPV module*
dc.subject.otherdata analysis*
dc.subject.otherpartial shading*
dc.subject.otheropposition-based learning*
dc.subject.othersilicon*
dc.subject.otherfloating PV module (FPVM)*
dc.subject.otherelectroluminescence*
dc.subject.otherurban compactness*
dc.titlePV System Design and Performance*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-623-9*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039216222*
oapen.relation.isbn9783039216239*
oapen.pages360*
oapen.edition1st*


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