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ScienceDirect
Materials Today: Proceedings 5 (2018) 23275–23280 www.materialstoday.com/proceedings
2214-7853 © 2018 Elsevier Ltd. All rights reserved.
Selection and Peer-review under responsibility of the Conference Committee Members of International Conference on Advances in Energy
Research 2015 (ICAER-2015).
ICAER-2015
Soiling Effect on Crystalline and Thin-film Technology PV
Modules for Composite Climate Zone of India
Shivendra Kaundilya
1
, O.S. Sastry
2, *
, Birinchi Bora
2
, Supriya Rai
2
, Manander Bangar
2
,
Renu
2
, Rashmi Singh
2
, Avinash Kumar
3
, Kamlesh Yadav
2
, Mithilesh Kumar
2
,
R. Arun Prasath
1
1
LEMS ,Centre of Green EnergyTechnology Pondicherry University, Puducherry,605014, India
2
National Institute of Solar Energy, Gurgaon, Haryana,122003, India
3
Tezpur University, Tezpur, Assam,784028, India
Abstract
Effect of soiling on thin film and crystalline technology for composite climate has been reported here. Three test setup structures
with dual axis manual tracking have been installed at outdoors for exposure of modules at different tilt angles 130, 280 & 430. In
the same structure with different inclination clean and dust module of each technology is installed to study the effect of variation
in current, spectrum and temperature. The manual cleaning of non-dusty modules is done on daily basis in the early morning. The
short circuit current of all modules are measured through a programmable digital multi-meter on continuous basis. There is a
drop in Isc current for the dust module with the increase of dust accumulation. A change in spectrum is also observed for each
day and drop in average photon energy was observed due to change in transmissivity.
© 2018 Elsevier Ltd. All rights reserved.
Selection and Peer-review under responsibility of the Conference Committee Members of International Conference on Advances in Energy
Research 2015 (ICAER-2015).
Keywords: Dust; Soiling ratio; transmissivity ;spectrum
* Corresponding author. Tel.: +91-9650902538
E-mail : supriya.ece.imps@gmail.com