Analysis of Third-Generation Solar Cell Design with Physics of Semiconductor

Analysis of Third-Generation Solar Cell Design with Physics of Semiconductor

Authors

DOI:

https://doi.org/10.56741/jnest.v3i02.525

Keywords:

Design, Semiconductor, Solar Cell, Third Generation

Abstract

The paper presents the Analysis of Generation Solar Cell Design with Physics of Semiconductor. The research problem in this study is how to design a high-performance solar cell with novel semiconductor compounds that are fabricated in the laboratory based on the physical parameters. The approach to solving the proposed research problem is based on experimental studies through theoretical research in recent works. The first one is to develop the effective structure for solar cell design and the other is to develop the energy band structure of III-V compound-based third-generation solar cell. The simulation analyses were carried out with the help of MATLAB language. There are many steps to designing high-performance semiconductor devices for real-world applications. The results confirm that the numerical analyses of these two developments could be supported to estimate the outcomes of experimental studies without using real equipment in the laboratory. 

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Author Biographies

Hsu Myat Tin Swe, Yangon Technological University

received her B.E. (Electronics) from Technological University (Taunggyi) in 2015, M.E. (Electronics) Dergee from Yangon Technological University (YTU) in 2020, respectively. She is now a PhD candidate of the Department of Electronic Engineering of Yangon Technological University, Myanmar. (email: kohlamyotun.ytu@gmail.com).

Ei Ei Khin, Yangon Technological University

is a Professor of the Department of Electronic Engineering at Yangon Technological University, Myanmar. She also manages the Remote Sensing and GIS Research Centre of Yangon Technological University. (email: maeieikhin.ytu@gmail.com).

Khaing Thandar Soe, Yangon Technological University

is an Assistant Lecturer of the Department of Electronic Engineering of Yangon Technological University, Myanmar. (email: makhaingthandarsoe.ytu@gmail.com).

Lei Lei Yin Win, Yangon Technological University

is a Professor of the Department of Electronic Engineering of Yangon Technological University, Myanmar. (email: maleileiyinwin.ytu@gmail.com).

Hla Myo Tun, Yangon Technological University

is a Leading Pro-Rector for Research and Engineering Higher Education of Yangon Technological University (YTU), Myanmar. He specializes in professional training for Engineering Higher Education leaders, heads of departments and faculty members. He also directs Research and Development programmes and workshops and works as a certified Quality Assurance Evaluator of the Myanmar Engineering Council (MEngC) since 2019. (email: kohlamyotun.ytu@gmail.com).

Devasis Pradhan, Acarya Institute of Technology

is working as an Assistant Professor in Grade 1 and Dean of Research and Development at Acharya Institute of Technology, Bengaluru, Karnataka, from 2017 onwards. His current research includes the effectiveness of 5G Green Communications, mmWave antenna design, UWB antennas, and its implementation. With 16+ years of experience in the Academic and Research field, he has published 76 research papers and eight papers submitted to IEEE Access and Reputed Book and 4 Authored Books and 3 Edited Books (CRC, ISTE, Bentham Science) with a reputed publishing house. (email: devasispradhan@acharya.ac.in). 

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Published

2024-03-11 — Updated on 2024-03-30

How to Cite

Tin Swe, H. M., Ei Khin, E., Soe, K. T., Win, L. L. Y., Tun, H. M., & Pradhan, D. (2024). Analysis of Third-Generation Solar Cell Design with Physics of Semiconductor. Journal of Novel Engineering Science and Technology, 3(02), 31–37. https://doi.org/10.56741/jnest.v3i02.525

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