DocumentCode
262084
Title
Reduction of reflection losses in solar cell using Anti Reflective coating
Author
Kumaragurubaran, B. ; Anandhi, S.
Author_Institution
BIT Campus, Coll. of Eng., Dept. of Mech. Eng., Anna Univ., Trichy, India
fYear
2014
fDate
16-17 April 2014
Firstpage
155
Lastpage
157
Abstract
Direct energy conversion from sunlight to electricity is obtained through solar cells. The Efficiency of solar cells is about 23.89% in the laboratory and 13.76%. More than 30% of incident light is reflected back from the surface of single crystalline Silicon (Si) solar cells because of the high refractive index of Silicon material. The initial objective of this project is to minimize the reflection losses in solar cells using an Anti-Reflection coating (ARC). In solar cell applications, a single layer thin film Anti-Reflective coating is often used. But such a Single Layer Anti-Reflective coating (SLARC) and Double layer Anti-Reflective coating reduces reflectivity only in a limited range. Triple Layer Anti reflective coatings (TLARC) are so widely utilized to improve conversion efficiencies and current density of silicon solar cells. Such Triple layer antireflective coating can eliminate the need for a mechanical tracking device for proper optical alignment of the solar cell with respect to incident sunlight.
Keywords
antireflection coatings; current density; elemental semiconductors; refractive index; silicon; solar cells; SLARC; Si; TLARC; anti-reflection coating; current density; direct energy conversion; double layer anti-reflective coating; mechanical tracking device; optical alignment; reflection loss reduction; refractive index; silicon material; single crystalline silicon solar cells; single layer anti-reflective coating; thin film anti-reflective coating; triple layer anti reflective coatings; Reflection; ARC; Reflectance; Reflection loss; Solar cell; TiAl2;
fLanguage
English
Publisher
ieee
Conference_Titel
Computation of Power, Energy, Information and Communication (ICCPEIC), 2014 International Conference on
Conference_Location
Chennai
Print_ISBN
978-1-4799-3826-1
Type
conf
DOI
10.1109/ICCPEIC.2014.6915357
Filename
6915357
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