[[abstract]]This article implements for the first time a numerical semiconductor device simulation-based multiobjective evolutionary algorithm (MOEA) for the characteristic optimization of amorphous silicon thin-film solar cells, based upon a unified optimization framework (UOF). To calculate the device's characteristic, a set of coupled solar cell transport equations consisting of the Poisson equation, the electron-hole current continuity equations, and the photo-generation model is solved numerically. Electrical characteristics, the short-circuited current, the open-circuited voltage, and the conversion efficiency are calculated to analyze the properties of the explored solar cells. The aforementioned device simulation results are used to...
We have applied Rosenbrock's optimization algorithm to obtain the optimized efficiency of a solar ce...
Designing solar cells involves optimizing the device makeup, such as the semiconductor layer thickne...
International audienceThis article investigates the optimal efficiency of a photovoltaic system base...
A new method for developing a realistic physical model of any type of solid state device is presente...
NPS Defense Energy SeminarPhotovoltaic Devices commonly known as Solar Cells, are the key components...
Simulation model of solar cell device is developed to investigate the optimization of conversion eff...
We propose a two-stage multi-objective optimization framework for full scheme solar cell structure d...
This paper develops a unique solar cell modeling approach that incorporates search and optimization ...
Material defects govern the performance of a wide range of energy conversion and storage devices, in...
Single-junction solar cells are the most available in the market and the most simple in terms of the...
In this paper, another strategy based for the extraction of electrical parameters (the immersion cur...
International audienceThe design and optimization of novel structures is an essential part of the ne...
Due to its ability to handle nonlinear functions regardless of the derivatives information, evolutio...
In this thesis, the physics of CIGS and micromorph solar cells are investigated by numerical simulat...
We have applied Rosenbrock's optimization algorithm to obtain the optimized efficiency of a solar ce...
Designing solar cells involves optimizing the device makeup, such as the semiconductor layer thickne...
International audienceThis article investigates the optimal efficiency of a photovoltaic system base...
A new method for developing a realistic physical model of any type of solid state device is presente...
NPS Defense Energy SeminarPhotovoltaic Devices commonly known as Solar Cells, are the key components...
Simulation model of solar cell device is developed to investigate the optimization of conversion eff...
We propose a two-stage multi-objective optimization framework for full scheme solar cell structure d...
This paper develops a unique solar cell modeling approach that incorporates search and optimization ...
Material defects govern the performance of a wide range of energy conversion and storage devices, in...
Single-junction solar cells are the most available in the market and the most simple in terms of the...
In this paper, another strategy based for the extraction of electrical parameters (the immersion cur...
International audienceThe design and optimization of novel structures is an essential part of the ne...
Due to its ability to handle nonlinear functions regardless of the derivatives information, evolutio...
In this thesis, the physics of CIGS and micromorph solar cells are investigated by numerical simulat...
We have applied Rosenbrock's optimization algorithm to obtain the optimized efficiency of a solar ce...
Designing solar cells involves optimizing the device makeup, such as the semiconductor layer thickne...
International audienceThis article investigates the optimal efficiency of a photovoltaic system base...