Title :
High performance concentrating photovoltaic module designs for utility scale power generation
Author :
Plesniak, Adam ; Jones, Roy ; Schwartz, Justin ; Martins, Goncalo ; Hall, Jeffrey ; Narayanan, Arun ; Whelan, Darragh ; Benitez, P. ; Miano, J.C. ; Cvetkovic, Aleksandra ; Hernandez, M. ; Dross, O. ; Alvarez, Roberto
Author_Institution :
Boeing Co., Seal Beach, CA, USA
Abstract :
The Boeing Company Phantom Works has developed three different prototype photovoltaic concentrator arrays since March 2007. Identified as Prototype A, B and C, the experimentally proven technical characteristics of each design are presented. The concentrator designs utilize a 1 cm2 multi-junction solar cell assembly in conjunction with SMS non-imaging optical designs manufactured with low-cost mass-producible technologies. Prototype A is an on-axis XR optical concentrator with a 733x geometrical concentration demonstrating a ± 1.73° acceptance angle and 23.7% conversion efficiency. Prototype B is an off-axis free-form XR optical concentrator with a 810x geometrical concentration demonstrating a ± 1.32° acceptance angle and 25.3% conversion efficiency. Prototype C is the most recent off-axis free-form XR optical concentrator with a 801x geometrical concentration and a theoretical ±1.80° acceptance angle demonstrating a conversion efficiency greater than 27.0%. Prototype C is also the basis for the Boeing Proof of Design (POD) module, demonstrating an acceptance angle of ±1.48° and a conversion efficiency of 29.4% (as of May 8, 2009). Manufacturability has been paramount during the design process, resulting in high performance concentrating photovoltaic modules using production quality components.
Keywords :
modules; optical design techniques; solar cells; solar energy concentrators; Boeing Company Phantom Works; Prototype A; Prototype B; Prototype C; conversion efficiency; high performance concentrating photovoltaic module; low-cost mass-producible technology; manufacturability; multijunction solar cell assembly; nonimaging optical designs; off-axis free-form XR optical concentrator; on-axis XR optical concentrator; production quality components; prototype photovoltaic concentrator arrays; scale power generation; Assembly; Geometrical optics; Imaging phantoms; Manufacturing processes; Optical design; Photovoltaic cells; Photovoltaic systems; Process design; Prototypes; Solar power generation;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2009 34th IEEE
Conference_Location :
Philadelphia, PA
Print_ISBN :
978-1-4244-2949-3
Electronic_ISBN :
0160-8371
DOI :
10.1109/PVSC.2009.5411374