Javascript must be enabled to continue!
Effect of chromatic aberration on performance of concentrated multi-junction solar cells and their optimization
View through CrossRef
In order to investigate the influence of the chromatic aberration on the performance of multi-junction solar cells, the performance of the triple-junction GaInP/GaInAs/Ge solar cell under high concentration condition is investigated by a three-dimensional (3D) model based on distributed circuit units. Moreover, the effects of chromatic aberration on the performance of solar cells with different sizes are studied by analyzing the distributions of the voltage, the dark current and the transverse current in each layer. It is indicated that the photo-generated current is mismatched in local region of multi-junction solar cell, which is caused by chromatic aberration. However, the mismatched photo-generated current can be compensated for by the form of transverse current, and the current can be better matched when the size of solar cell is reduced. When the size of solar cell is as big as 20 mm20 mm, the mismatched photo-generated current is large, so are the transverse current and the dark current. But the transverse current is far less than the dark current, only 12% of the mismatched photo-generated carriers can flow from the edge to the center of the cell through the transverse resistance between the sub-cells, the rest of the photo-generated carriers are lost in the form of dark current, and the cell is in a state of current mismatching. Finally, the chromatic aberration gives rise to a reduction in the short-circuit current density, and the efficiency is only 94% as high as that of non-chromatic aberration. When the size of the cell decreases, the mismatched photo-generated current and the transverse current also decrease gradually, but the dark current caused by the chromatic aberration exponentially decreases more quickly, and the ratio of the transverse current to the mismatched photo-generated current increases gradually. Therefore, the overall state of the current mismatching is alleviated, and the short-circuit current density is increased gradually. Moreover, when the size of solar cell is 2 mm2 mm, the transverse current is much larger than the dark current, 99.98% of the mismatched photo-generated carriers can be compensated for in the form of transverse current. Although the photo-generated current of the cell is mismatched in local region, the overall is still in the state of current matching. The short-circuit current densities with and without chromatic aberration are equal, but the filling factor is reduced due to the transverse resistor. When the size of cell is further reduced, the mismatched photo-generated current is very small, and the influence of the transverse series resistance decreases gradually. Therefore, the value of the filling factor gradually approaches to the value without chromatic aberration. Furthermore, the performance of solar cell with and without chromatic aberration is nearly the same when the size of solar cell is as small as 0.4 mm0.4 mm. The efficiencies are both about 34.5% and the effects of chromatic aberration can be ignored.
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Title: Effect of chromatic aberration on performance of concentrated multi-junction solar cells and their optimization
Description:
In order to investigate the influence of the chromatic aberration on the performance of multi-junction solar cells, the performance of the triple-junction GaInP/GaInAs/Ge solar cell under high concentration condition is investigated by a three-dimensional (3D) model based on distributed circuit units.
Moreover, the effects of chromatic aberration on the performance of solar cells with different sizes are studied by analyzing the distributions of the voltage, the dark current and the transverse current in each layer.
It is indicated that the photo-generated current is mismatched in local region of multi-junction solar cell, which is caused by chromatic aberration.
However, the mismatched photo-generated current can be compensated for by the form of transverse current, and the current can be better matched when the size of solar cell is reduced.
When the size of solar cell is as big as 20 mm20 mm, the mismatched photo-generated current is large, so are the transverse current and the dark current.
But the transverse current is far less than the dark current, only 12% of the mismatched photo-generated carriers can flow from the edge to the center of the cell through the transverse resistance between the sub-cells, the rest of the photo-generated carriers are lost in the form of dark current, and the cell is in a state of current mismatching.
Finally, the chromatic aberration gives rise to a reduction in the short-circuit current density, and the efficiency is only 94% as high as that of non-chromatic aberration.
When the size of the cell decreases, the mismatched photo-generated current and the transverse current also decrease gradually, but the dark current caused by the chromatic aberration exponentially decreases more quickly, and the ratio of the transverse current to the mismatched photo-generated current increases gradually.
Therefore, the overall state of the current mismatching is alleviated, and the short-circuit current density is increased gradually.
Moreover, when the size of solar cell is 2 mm2 mm, the transverse current is much larger than the dark current, 99.
98% of the mismatched photo-generated carriers can be compensated for in the form of transverse current.
Although the photo-generated current of the cell is mismatched in local region, the overall is still in the state of current matching.
The short-circuit current densities with and without chromatic aberration are equal, but the filling factor is reduced due to the transverse resistor.
When the size of cell is further reduced, the mismatched photo-generated current is very small, and the influence of the transverse series resistance decreases gradually.
Therefore, the value of the filling factor gradually approaches to the value without chromatic aberration.
Furthermore, the performance of solar cell with and without chromatic aberration is nearly the same when the size of solar cell is as small as 0.
4 mm0.
4 mm.
The efficiencies are both about 34.
5% and the effects of chromatic aberration can be ignored.
Related Results
Solar Trackers Using Six-Bar Linkages
Solar Trackers Using Six-Bar Linkages
Abstract
A solar panel faces the sun or has the solar ray normal to its face to enhance power reaping. A fixed solar panel can only meet this condition at one moment...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Recent advances in solar photovoltaic technologies: Efficiency, materials, and applications
Recent advances in solar photovoltaic technologies: Efficiency, materials, and applications
Recent advancements in solar photovoltaic (PV) technologies have significantly enhanced the efficiency, materials, and applications of solar energy systems, driving the transition ...
Efficiency Performance Optimization of Photovoltaic Systems with Solar Concentrators
Efficiency Performance Optimization of Photovoltaic Systems with Solar Concentrators
Solar energy technology has undergone rapid improvement in recent years, with significant increases in efficiency and decreases in cost, solar energy becoming a viable source of re...
ANALYSIS OF THE OPERATION MODE OF THE SOLAR POWER PLANT
ANALYSIS OF THE OPERATION MODE OF THE SOLAR POWER PLANT
The article examines the load change schedule of the solar power plant in the Ukraine-Moldova energy union. The analysis of data averaged at minute and 15-minute intervals in the p...
AI-Driven Optimization for Solar Energy Systems: Theory and Applications
AI-Driven Optimization for Solar Energy Systems: Theory and Applications
The transition to renewable energy is critical for achieving sustainability, and solar energy is one of the most promising alternatives to fossil fuels. However, the efficiency of ...
Photovoltaic Technology: Power Conversion Efficiency of Solar Cells: A Review
Photovoltaic Technology: Power Conversion Efficiency of Solar Cells: A Review
In recent years, there are several types of solar cells that have been reported due to their continually improving power efficiency, straightforward solution production methods, po...
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...

