Title :
Series-Connection Designs for Dye Solar Cell Modules
Author :
Giordano, Fabrizio ; Petrolati, Eleonora ; Brown, Thomas M. ; Reale, Andrea ; Carlo, Aldo Di
Author_Institution :
Dept. of Electron. Eng., Univ. of Rome "Tor Vergata", Rome, Italy
Abstract :
We present a vis-à-vis experimental and PSPICE circuital comparison and optimization of W- and Z-type dye solar cell (DSC) modules. Important design and technological aspects which can, at the same time, promote and hamper each scheme were identified, including differing photocurrents (by a factor 1.6) between front- and back-illuminated cells, sheet-resistance-induced halving of fill factor (FF) when increasing cell width (2-20 mm), and vertical connections with resistances that can affect FF. The modules fabricated showed efficiencies of 4.7% and 4.2% over active area for Z and W modules and 3.4% over total area for both (due to different aperture ratios). Our simulations showed that geometrically optimized front-illuminated DSC Z modules would yield higher efficiencies than W modules built with the same materials if ideal vertical connections can be achieved. Pointers for further differing optimization of each scheme are laid out.
Keywords :
photoconductivity; photoemission; solar cells; W-type dye solar cell modules; Z-type dye solar cell modules; back-illuminated cells; efficiency 3.4 percent; efficiency 4.2 percent; efficiency 4.7 percent; fill factor; front-illuminated cells; photocurrents; series-connection designs; size 2 mm to 20 mm; vertical connections; Computer architecture; Lighting; Materials; Optimization; Photovoltaic cells; Resistance; SPICE; Balancing; design; dye solar cells (DSCs); photovoltaic (PV) modules; series interconnection;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2011.2158216