Please submit manuscripts in either of the following two submission systems

    ScholarOne Manuscripts

  • ScholarOne
  • 勤云稿件系统

  • 登录

Search by Issue

  • 2024 Vol.31
  • 2023 Vol.30
  • 2022 Vol.29
  • 2021 Vol.28
  • 2020 Vol.27
  • 2019 Vol.26
  • 2018 Vol.25
  • 2017 Vol.24
  • 2016 vol.23
  • 2015 vol.22
  • 2014 vol.21
  • 2013 vol.20
  • 2012 vol.19
  • 2011 vol.18
  • 2010 vol.17
  • 2009 vol.16
  • No.1
  • No.2

Supervised by Ministry of Industry and Information Technology of The People's Republic of China Sponsored by Harbin Institute of Technology Editor-in-chief Yu Zhou ISSNISSN 1005-9113 CNCN 23-1378/T

期刊网站二维码
微信公众号二维码
Related citation:Nidhi Shukla,Satish Kumar.Systematic Review on Critical Factors and Their Optimization for Solar Cell Performance Enhancement[J].Journal of Harbin Institute Of Technology(New Series),2024,31(4):85-98.DOI:10.11916/j.issn.1005-9113.2023043.
【Print】   【HTML】   【PDF download】   View/Add Comment  Download reader   Close
←Previous|Next→ Back Issue    Advanced Search
This paper has been: browsed 1740times   downloaded 2177times 本文二维码信息
码上扫一扫!
Shared by: Wechat More
Systematic Review on Critical Factors and Their Optimization for Solar Cell Performance Enhancement
Author NameAffiliation
Nidhi Shukla Department of Physics, Mansarovar Global University, Sehore 466001,India 
Satish Kumar Department of Physics, Mansarovar Global University, Sehore 466001,India 
Abstract:
Solar cells and other renewable energy sources are crucial in today's world where sustainability and environmental consciousness is at peak. Because of this, creating the optimal capacity is a fair aim for the operators of such technologies. The transformation of solar energy into either electricity by means of photovoltaics or into useable fuel by means of photo electrochemical cells remained a primary objective for research organizations and development sectors. In this piece, we will take a look back at the history of solar cells and examine their progression through the generations. The significant aspects which have an impact on the solar cells performance are also discussed. This article provides a comprehensive and in-depth overview of the important aspects that affect the solar cells performance, as well as a discussion of the application of bio-inspired optimization algorithms to improve the parameters of solar cells. Reviewing critical factors and their optimization for solar cell performance enhancement is crucial. It helps identify key performance factors, understand limitations, and challenges, and identify effective optimization strategies. By evaluating trade-offs and synergies, it guides future research and informs industrial applications, leading to more efficient and sustainable solar cell technologies.
Key words:  solar energy  photovoltaic cells  temperature  irradiance  design  optimization
DOI:10.11916/j.issn.1005-9113.2023043
Clc Number:TM914.4
Fund:

LINKS