<p>This study explores the potential design alternatives for cells by examining the dimensions and tapering of grid elements. The broadband solar cell absorber configurations design is studied with front/rear surface plasmon resonance through the employment of dimensions and tapering of single/tabbed solar cell grid elements. The analysis includes the grid structure, contact points, total series resistance, and estimated costs associated with cells, specifically comparing square-shaped cells against varying heights of N busbars or fingers within the cell grid. This comparison is based on different cross-sectional profiles of busbars or fingers in a single cell measurement configuration. Additionally, the research elucidates the grid structure, contact points, total series resistance, estimated costs, and front metal coverage for various cell shape configurations, again considering the cell grid with different busbar or finger cross-sectional profiles at a height of 30&#xa0;μm. Furthermore, the study measures and clarifies the contact points, grid structure, total series resistance, and estimated costs for rectangular-shaped cells in relation to the height of N busbars or fingers, utilizing a rectangular cross-sectional profile for a single cell or tabbed cell measurement setup, with ribbons set at a height of 200&#xa0;μm for the tabbed cell.</p>

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Broadband solar cell absorber configurations design with front/rear surface gain resonance through the employment of dimensions and tapering of single/tabbed solar cell grid elements

  • Thankamony Devakhi Subha,
  • Muthappa Perumal Chitra,
  • Arulraj Simon Prabu,
  • Kannan Krishnan,
  • Ramachandran Thandaiah Prabu,
  • Deepak Kumar Panda,
  • Md. Harun-Or-Rashid,
  • Md Abu Huraiya,
  • Ahmed Nabih Zaki Rashed

摘要

This study explores the potential design alternatives for cells by examining the dimensions and tapering of grid elements. The broadband solar cell absorber configurations design is studied with front/rear surface plasmon resonance through the employment of dimensions and tapering of single/tabbed solar cell grid elements. The analysis includes the grid structure, contact points, total series resistance, and estimated costs associated with cells, specifically comparing square-shaped cells against varying heights of N busbars or fingers within the cell grid. This comparison is based on different cross-sectional profiles of busbars or fingers in a single cell measurement configuration. Additionally, the research elucidates the grid structure, contact points, total series resistance, estimated costs, and front metal coverage for various cell shape configurations, again considering the cell grid with different busbar or finger cross-sectional profiles at a height of 30 μm. Furthermore, the study measures and clarifies the contact points, grid structure, total series resistance, and estimated costs for rectangular-shaped cells in relation to the height of N busbars or fingers, utilizing a rectangular cross-sectional profile for a single cell or tabbed cell measurement setup, with ribbons set at a height of 200 μm for the tabbed cell.