Modeling and Performance Analysis of Gallium Arsenide Based P-I-N Solar Cells
Md. Razuan Hossain, Farhan Shadman Chowdhury, Md. Al-Mamun Sabuz
Abstract
Md. Razuan Hossain, Farhan Shadman Chowdhury, Md. Al-Mamun Sabuz
Abstract
Current technology has made a lot of inspection and also facing many difficulties for optimizing a solar cell’s efficiency. Many previous works had been done on p-n junction solar cells to achieve the maximum performance. But a few researches show us that the performance of p-i-n solar cell has not yet reached its optimum level. Thus in this paper we concentrate on an analysis of Gallium Arsenide based p-i-n solar cell and achieve the maximum efficiency of a Gallium Arsenide based p-i-n solar cell. In this paper we ascertain a specific method to virtually design a Gallium Arsenide p-i-n solar cell and analyse its efficiency at different doping concentrations using device simulator. After doing rigorous analysis a maximum efficiency of 17.56 % was achieved for Gallium Arsenide solar cell. In this methodology we have perceived the foremost implementation of the unit cell in several doping concentrations. In this paper a comparison was made on the performance of Gallium Arsenide based p-i-n solar cell and suitable results were achieved. Keywords: fill factor, efficiency, doping, intrinsic
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Current technology has made a lot of inspection and also facing many difficulties for optimizing a solar cell’s efficiency. Many previous works had been done on p-n junction solar cells to achieve the maximum performance. But a few researches show us that the performance of p-i-n solar cell has not yet reached its optimum level. Thus in this paper we concentrate on an analysis of Gallium Arsenide based p-i-n solar cell and achieve the maximum efficiency of a Gallium Arsenide based p-i-n solar cell. In this paper we ascertain a specific method to virtually design a Gallium Arsenide p-i-n solar cell and analyse its efficiency at different doping concentrations using device simulator. After doing rigorous analysis a maximum efficiency of 17.56 % was achieved for Gallium Arsenide solar cell. In this methodology we have perceived the foremost implementation of the unit cell in several doping concentrations. In this paper a comparison was made on the performance of Gallium Arsenide based p-i-n solar cell and suitable results were achieved. Keywords: fill factor, efficiency, doping, intrinsic
Key concepts: Gallium arsenide, Solar cell, Gallium, Solar cell efficiency, Materials science, Doping, Optoelectronics, Metallurgy