2003 · 155 citations · 6 references
EngineeringAnnual Energy ProductionEnergy EfficiencyEnergy ConversionSeasonal Energy ProductionPhotovoltaic SystemsPhotovoltaic SystemPhotovoltaic Power StationPhotovoltaicsTesting ProceduresSystems EngineeringSolar Energy UtilisationElectrical EngineeringSolar PowerComputer EngineeringSmart GridEnergy ManagementBuilding-integrated PhotovoltaicsRooftop Photovoltaics
The most relevant basis for designing photovoltaic systems is their annual energy production, which is also the best metric for monitoring their long-term performance. An accurate array performance model based on established testing procedures is required to confidently predict energy available from the array. This model, coupled with the performance characteristics of other balance-of-system components, provides the tool necessary to calculate expected system performance and to compare actual versus expected energy production. Using such a tool, this paper quantifies the effect of the primary factors influencing the DC-energy available from different photovoltaic module technologies, and contrasts these influences with other system-level factors that often result in significantly less AC-energy delivered to the load than the array is capable of providing. Annual as well as seasonal energy production is discussed in the context of both grid-tied and stand-alone photovoltaic systems.
6
Commonly observed degradation in field-aged photovoltaic modules
Michael A. Quintana, D.L. King, T. J. McMahon et al. · 2003 · 288 citations
Engineering, Photovoltaic System, Photovoltaic Power Station +16
Application and validation of a new PV performance characterization method
C. Whitaker, T. Townsend, Jeff Newmiller et al. · 2002 · 78 citations
A new performance index for PV system analysis
T. Townsend, C. Whitaker, B.K. Farmer et al. · 2002 · 35 citations
Comparison of module performance characterization methods
Benjamin Kroposki, William Marion, David L. King et al. · 2002 · 28 citations