In this work, a novel multidiode model is proposed for optimizing the front grid of multijunction solar cells operating under concentration conditions. The model allows for quickly exploring the maximum achievable efficiency under a wide range of operating conditions and design parameters such as the redirecting capability, period and width of the fingers, the light concentration, and the metal and emitter sheet resistivity. The proposed multidiode model shows to be consistent with experimental data and with more complex modeling approaches such as the simulation program with integrated circuit emphasis (SPICE) model
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
This paper presents modelling and analysis of multi-junction solar cells to improve the conversion e...
We have developed a computationally efficient simulation model for the optimization of redirecting e...
A distributed network model for the optimization of the front contact grid structure has been develo...
In a common approach, the electric behavior of a solar cell is modeled by dividing it into smaller s...
Recent advancements in the development of high-efficiency multijunction solar cells\ud have led to a...
Multijunction concentrator solar cells are a promising technology in the effort to alleviate the gro...
The high current generated in cells under concd. sunlight causes a voltage drop on the front contact...
By theoretical simulation of two grid patterns that are often used in concentrator solar cells, we g...
The design of a triple junction solar cell’s front contact grid can significantly affect cell conver...
Photovoltaic devices can exhibit an increase in conversion efficiency as increasing power density is...
A 2.5-D distributed circuit model for concentrator silicon solar cells has been developed in order t...
AbstractThe demand for low-priced solar cells with higher efficiencies becomes more necessary to rea...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
This paper presents modelling and analysis of multi-junction solar cells to improve the conversion e...
We have developed a computationally efficient simulation model for the optimization of redirecting e...
A distributed network model for the optimization of the front contact grid structure has been develo...
In a common approach, the electric behavior of a solar cell is modeled by dividing it into smaller s...
Recent advancements in the development of high-efficiency multijunction solar cells\ud have led to a...
Multijunction concentrator solar cells are a promising technology in the effort to alleviate the gro...
The high current generated in cells under concd. sunlight causes a voltage drop on the front contact...
By theoretical simulation of two grid patterns that are often used in concentrator solar cells, we g...
The design of a triple junction solar cell’s front contact grid can significantly affect cell conver...
Photovoltaic devices can exhibit an increase in conversion efficiency as increasing power density is...
A 2.5-D distributed circuit model for concentrator silicon solar cells has been developed in order t...
AbstractThe demand for low-priced solar cells with higher efficiencies becomes more necessary to rea...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
The demand for low-priced solar cells with higher efficiencies becomes more necessary to reach grid ...
This paper presents modelling and analysis of multi-junction solar cells to improve the conversion e...