Solar Photovoltaic Panel Cleaning Mechanism

May 2023
Vol-9, Issue-3
Paper ID: 20164
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Electrical Enigineering
Keywords
Single axis sun tracking automatic cleaning dust deposition
Abstract
The solar PV modules are generally employed in dusty environments which is the case in tropical countries like India. The dust gets accumulated on the front surface of the module and blocks the incident light from the sun. It reduces the power generation capacity of the module. The power output reduces as much as by 50% if the module is not cleaned for a month. To regularly clean the dust, a sun tracking- cum- cleaning system has been designed, which not only tracks the sun but also cleans the modules automatically. This automated system is implemented using 8051 microcontroller which controls the stepper motor coupled with the gear box (40:1ratio). This mechanism does not require any sensor or synchronization for tracking the sun. While for cleaning the modules, a mechanism consists of a sliding brush has been developed. In this mechanism, the solar panels make a rotation of 360o in a day, which results in sliding of cleaning brushes twice over the PV modules. In terms of daily energy generation, the presented tracking-cum cleaning scheme provides about 30% more energy outputs compared to the flat PV module (module kept stationary on ground) and about 15% more energy outputs compared to PV module with single axis tracking. The implementation and working of 360o sun tracking system with automatic cleaning is described in this paper.

Author Information

# Name Institute / Affiliation
1 Sidharth Sunil Pethkar Shree Santkrupa Institute of Engineering and Technology, Ghogaon.
2 Varad Anil Yadav. Shree Santkrupa Institute of Engineering and Technology, Ghogaon.
3 Gauravraje Narendra Shinde Shree Santkrupa Institute of Engineering and Technology, Ghogaon.
4 Mandar Shriniwas Jadhav. Shree Santkrupa Institute of Engineering and Technology, Ghogaon.
5 Manisha Prakash Kokare Shree Santkrupa Institute of Engineering and Technology, Ghogaon.
6 Pratik Prakash Thorat. Shree Santkrupa Institute of Engineering and Technology, Ghogaon.

How to Cite

Use the following formats to cite this article in your research.

APA Style
Pethkar, Sidharth Sunil, Yadav., Varad Anil, Shinde, Gauravraje Narendra, Jadhav., Mandar Shriniwas, Kokare, Manisha Prakash, & Thorat., Pratik Prakash (2023). Solar Photovoltaic Panel Cleaning Mechanism. International Journal of Advance Research and Innovative Ideas In Education, 9(3), 845-850.
MLA Style
Pethkar, Sidharth Sunil, et al. "Solar Photovoltaic Panel Cleaning Mechanism." International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 3, 2023, pp. 845-850.
IEEE Style
Sidharth Sunil Pethkar, Varad Anil Yadav., Gauravraje Narendra Shinde, Mandar Shriniwas Jadhav., Manisha Prakash Kokare, and Pratik Prakash Thorat., "Solar Photovoltaic Panel Cleaning Mechanism," International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 3, pp. 845-850, 2023.
Vancouver Style
Pethkar Sidharth Sunil, Yadav. Varad Anil, Shinde Gauravraje Narendra, Jadhav. Mandar Shriniwas, Kokare Manisha Prakash, Thorat. Pratik Prakash. Solar Photovoltaic Panel Cleaning Mechanism. International Journal of Advance Research and Innovative Ideas In Education. 2023;9(3):845-850.
Harvard Style
Pethkar, Sidharth Sunil, Yadav., Varad Anil, Shinde, Gauravraje Narendra, Jadhav., Mandar Shriniwas, Kokare, Manisha Prakash, & Thorat., Pratik Prakash (2023) 'Solar Photovoltaic Panel Cleaning Mechanism', International Journal of Advance Research and Innovative Ideas In Education, 9(3), pp. 845-850.
Chicago Style
Pethkar, Sidharth Sunil, et al. "Solar Photovoltaic Panel Cleaning Mechanism." International Journal of Advance Research and Innovative Ideas In Education 9, no. 3 (2023): 845-850.
Turabian Style
Pethkar, Sidharth Sunil, et al. "Solar Photovoltaic Panel Cleaning Mechanism." International Journal of Advance Research and Innovative Ideas In Education 9, no. 3 (2023): 845-850.

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