We show results of numerical and compact modeling of poly-crystalline CIGS thin-film solar cells. We use numerical simulations as a benchmark to develop a simple, physics-based compact model of the behavior of the cell in the dark. We show that, while the single-crystal cell behavior can be accurately described by a two-diode model, when grain boundaries are present and active a four-diode model is required. Finally, we show results of the application of numerical simulations to the study of the cell degradation under damp heat stress conditions
A deeper understanding of Cu(In,Ga)Se2 (CIGS) solar cells is important for the further improvement o...
Solar cells operate by converting the radiation power from sun light into electrical power through p...
One of the trends making its way through the Photovoltaics (PV) industry, is the search for new appl...
Thin-film solar cells based around the absorber material CuIn1-xGaxSe2 (CIGS) are studied with respe...
AbstractThis paper deals with the development of an analytical model for simulating a polycrystallin...
The modeling of photovoltaic cells is an essential step in the analysis of the performances and char...
In this paper we present an optical simulation of light management in Cu(In,Ga)Se2 thin-film solar c...
We present a comprehensive device model for Cu In,Ga Se2 CIGSe thin film solar cells based on num...
This work shows two-dimensional numerical simulations aimed at providing indications for the develop...
CuInSe$\sb2$ is a good candidate for thin-film solar cells because of its low cost, manufacturabilit...
In this paper, Finite Element method (FEM) has been employed for the study of Copper Indium Gallium ...
By using numerical simulation, the operating temperatures of a thin-film solar cell based on CuInSe2...
Thin film technologies are one of the most promising new developments in the field of solar research...
AbstractIn this work, numerical simulations of single and double junction solar cells based copper g...
AbstractIn this paper, we study the effect of temperature on the Copper Indium Gallium Selenide (CIG...
A deeper understanding of Cu(In,Ga)Se2 (CIGS) solar cells is important for the further improvement o...
Solar cells operate by converting the radiation power from sun light into electrical power through p...
One of the trends making its way through the Photovoltaics (PV) industry, is the search for new appl...
Thin-film solar cells based around the absorber material CuIn1-xGaxSe2 (CIGS) are studied with respe...
AbstractThis paper deals with the development of an analytical model for simulating a polycrystallin...
The modeling of photovoltaic cells is an essential step in the analysis of the performances and char...
In this paper we present an optical simulation of light management in Cu(In,Ga)Se2 thin-film solar c...
We present a comprehensive device model for Cu In,Ga Se2 CIGSe thin film solar cells based on num...
This work shows two-dimensional numerical simulations aimed at providing indications for the develop...
CuInSe$\sb2$ is a good candidate for thin-film solar cells because of its low cost, manufacturabilit...
In this paper, Finite Element method (FEM) has been employed for the study of Copper Indium Gallium ...
By using numerical simulation, the operating temperatures of a thin-film solar cell based on CuInSe2...
Thin film technologies are one of the most promising new developments in the field of solar research...
AbstractIn this work, numerical simulations of single and double junction solar cells based copper g...
AbstractIn this paper, we study the effect of temperature on the Copper Indium Gallium Selenide (CIG...
A deeper understanding of Cu(In,Ga)Se2 (CIGS) solar cells is important for the further improvement o...
Solar cells operate by converting the radiation power from sun light into electrical power through p...
One of the trends making its way through the Photovoltaics (PV) industry, is the search for new appl...