Materials for concentrator photovoltaic systems: Optical properties and solar radiation durability

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Abstract

Concentrator photovoltaic (CPV) systems are designed to operate over a wide range of solar concentrations, from low concentrations of ∼1 to 12 Suns to medium concentrations in the range from 12 to 200 Suns, to high concentration CPV systems going up to 2000 Suns. Many transparent optical materials are used for a wide variety of functions ranging from refractive and reflective optics to homogenizers, encapsulants and even thermal management. The classes of materials used also span a wide spectrum from hydrocarbon polymers (HCP) and fluoropolymers (FP) to silicon containing polymers and polyimides (PI). The optical properties of these materials are essential to the optical behavior of the system. At the same time radiation durability of these materials under the extremely wide range of solar concentrations is a critical performance requirement for the required lifetime of a CPV system. As part of our research on materials for CPV we are evaluating the optical properties and solar radiation durability of various polymeric materials to define the optimum material combinations for various CPV systems. © 2010 American Institute of Physics.

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French, R. H., Rodríguez-Parada, J. M., Yang, M. K., Lemon, M. F., Romano, E. C., & Boydell, P. (2010). Materials for concentrator photovoltaic systems: Optical properties and solar radiation durability. In AIP Conference Proceedings (Vol. 1277, pp. 127–130). https://doi.org/10.1063/1.3509171

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