IEEE Journal of Photovoltaics · 2017 · 112 citations · 41 references
Spectral AlbedoElectrical EngineeringPower OutputEngineeringBifacial Solar CellsSolar PowerOptical PropertiesEnergy EfficiencyRadiative AbsorptionApplied PhysicsExperimental StudyPhotovoltaic DevicesPhotovoltaic SystemAnti-reflective CoatingsSolar CellsPhotovoltaicsSolar Energy UtilisationSolar Cell Materials
We have investigated the influence of the spectral albedo on the power output of bifacial solar cells. We adapted the Shockley-Queisser radiative flux balance framework to account for a variation of the spectrum and intensity of the incoming light. We find that the ideal band gap and the maximum efficiency depend on the spectral albedo of the surroundings and that optimal cell performance cannot be assessed when only accounting for a spectrally independent albedo. With a spectral albedo model, we predict that the power output for a bifacial silicon solar cell surrounded by green grass is 3.1% higher than for a wavelength-independent albedo, and even 5.2% higher for white sand. We experimentally verify this trend for silicon heterojunction solar cells and we derive the ideal spectral albedo.
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