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  4. Energy Yield Modelling of 2D and 3D Curved Photovoltaic Modules
 
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2020
Conference Paper
Title

Energy Yield Modelling of 2D and 3D Curved Photovoltaic Modules

Abstract
This paper presents a detailed model to simulate the energy yield potential of various designs of curved PV modules depending on their bending angle, orientation and location. Furthermore, we analyze the effective irradiance incident on the curved cell pattern surface to investigate the current mismatch between cells and strings that results from the deviating level of irradiance reaching the cells. The results of our simulations show that parallel interconnection of strings produces a higher energy yield for most but not all curved module layouts compared to standard series interconnection with three bypass diodes. The energy yield of curved PV modules can be maximized by using an adapted module design that compensates the inhomogeneous irradiance distribution on the curved module surface.
Author(s)
Neven-du Mont, Sebastian
Heinrich, Martin
Pfreundt, Andrea
Kutter, Christoph  
Tummalieh, Ammar  
Neuhaus, Dirk Holger  
Mainwork
37th European Photovoltaic Solar Energy Conference and Exhibition, EU PVSEC 2020  
Conference
European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC) 2020  
DOI
10.24406/publica-r-409156
10.4229/EUPVSEC20202020-4BO.13.6
File(s)
N-606165.pdf (1.14 MB)
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Photovoltaik

  • Photovoltaische Module und Kraftwerke

  • Modultechnologie

  • BIPV

  • yield

  • VIPV

  • PV module

  • irradiance

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