1 |
Design of a planar solar illumination system to bring natural light into the building core Gao SH, Xu XP, Yin P Renewable Energy, 150, 1178, 2020 |
2 |
Theoretical and experimental performance of a two-stage (50X) hybrid spectrum splitting solar collector tested to 600 degrees C Widyolar B, Jiang L, Ferry J, Winston R, Kirk A, Osowski M, Cygan D, Abbasi H Applied Energy, 239, 514, 2019 |
3 |
Experimental performance of a two-stage (50 x) parabolic trough collector tested to 650 degrees C using a suspended particulate heat transfer fluid Widyolar B, Jiang L, Ferry J, Winston R, Cygan D, Abbasi H Applied Energy, 240, 436, 2019 |
4 |
Design of a compound parabolic concentrator for a multi-source high-flux solar simulator Li LF, Wang B, Pottas J, Lipinski W Solar Energy, 183, 805, 2019 |
5 |
Design method of a planar solar concentrator for natural illumination Lv JQ, Xu XP, Yin P Solar Energy, 194, 554, 2019 |
6 |
Design and modeling of a spectrum-splitting hybrid CSP-CPV parabolic trough using two-stage high concentration optics and dual junction InGaP/GaAs solar cells Widyolar B, Jiang L, Abdelhamid M, Winston R Solar Energy, 165, 75, 2018 |
7 |
Ball lens as secondary optical element for CPV system Huang QL, Xu LX Solar Energy, 148, 57, 2017 |
8 |
Waveguide solar concentrator design with spectrally separated light Michel C, Blain P, Clermont L, Languy F, Lenaerts C, Fleury-Frenette K, Decultot M, Habraken S, Vandormael D, Cloots R, Thalluri GKVV, Henrist C, Colson P, Loicq J Solar Energy, 157, 1005, 2017 |
9 |
Novel double-stage high-concentrated solar hybrid photovoltaic/thermal (PV/T) collector with nonimaging optics and GaAs solar cells reflector Abdelhamid M, Widyolar BK, Jiang L, Winston R, Yablonovitch E, Scranton G, Cygan D, Abbasi H, Kozlov A Applied Energy, 182, 68, 2016 |
10 |
Optical study of a solar concentrator for space applications based on a diffractive/refractive optical combination Michel C, Loicq J, Languy F, Habraken S Solar Energy Materials and Solar Cells, 120, 183, 2014 |