Efficient Solar Tracking System for Optimum Power Output: A Review
Abstract
Power plants based on the solar concept are very important for areas facing electricity shortage. To address the electricity shortage it is very essential to deploy latest and emerging technologies like IoT to transfer the world into smart concepts like intelligent vehicles, power plants with smart machinery etc. The paper presents the review of smart and efficient solar tracking system with manual and automatic rotation of panels based on the intensity of lights.
How to cite this article: Yousuf Y, Kaur K. Efficient Solar Tracking System for Optimum Power Output: A Review. J Adv Res Alt Energ Env Eco 2020; 7(4): 21-25.
References
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2. Jummat SA,Othman MH. Solar Energy Measurement Using Arduino. MATEC Web of Conferences 150, 2018.
3. Amaize P, Uzairue S, Sanni TF. Arduino Based Solar Tracking System for Energy Improvement of PV Solar Panel. Proceedings of the International Conference on Industrial Engineering and Operations Management Washington DC, USA, 2018.
4. Akhter S, Nayeem I. Automated Solar Panel with Web Monitoring. American Journal of Engineering Research 2018.
5. Jalil SM, Abdurrahman F, Meliala S et al. Design of Maximum Power Point Tracking for Solar Collector Drying System: An Experimental Study. International Journal of Power Electronics and Drive System (IJPEDS 2018; 9(4).
6. Subhasri G, Jeyalakshmi C. A Study of IoT based Solar Panel Tracking System. Advances in Computational Sciences and Technology ISSN 0973-6107 2018; 11(7).
7. Mustafa FI, Shakir S, Mustafa FF et al. Simple Design and Implementation of Solar tracking System Two Axis with Four Sensors for Baghdad city, IEEE, 2018.
8. Jain A, Tharani K, Dhall H et al. Solar Home Lighting System with AC and DC loads. IOSR Journal of Electrical and Electronics Engineering(IOSR-JEEE) 2017; 12(3).
9. Kumar BP, Jonnalagadda S, Srihari M et al. Dual-Axis Solar Tracker. International Journal of Recent Scientific Research 2017; 8(2).
10. Racharla S, Rajan K. Solar Tracking System-A review. International Journal of Sustainable Engineering 2016.
11. Parasnis NV, Tadamalle AP. Automatic Solar Tracking System. International Journal of Innovations In Engineering Research And Technology [IJIERT] 2016.
12. Sabri N, Abgenah SM, Salim MS et al. Design And Development Of An Embedded Active Solar Tracking And Management System Based SBC. Journal of Theoretical and Applied Information Technology 2016; 94; 1.
13. Sohag HA, Hasan M, Khatun M et al. An Accurate and Efficient Solar Tracking System Using Image Processing and LDR Sensor. Proceedings of International Conference on Electrical Information and Communication Technology (EICT) 2015.
14. Hossain S, Salam B, Shahriar Al et al. Azimuth-Altitude Dual Axis Solar Tracker. Proceedings of the International Conference on Mechanical Engineering and Renewable Energy 2015 (ICMERE2015) ICMERE2015-PI-274, 2015.
15. Deekshith K, Aravind D, Nagaraju H et al. International Journal of Scientific & Engineering Research 2015; 6(9).
16. Juang JN, Radharamanan R. Design of a Solar Tracking System for Renewable Energy. Conference of the American Society for Engineering Education (ASEE Zone), 2014.
17. Zhang F. Research of Solar Tracking Controller based on the STC12C5A32S2. IEEE Workshop on Electronics, Computer and Applications, 2014.
18. Zhang X, Li X, Lu K. Research on An Intelligent Solar Tracking System Based on LPC2131, IEEE, 2012.
Published
2020-12-22
How to Cite
YOUSUF, Yawer; KAUR, Kiranpreet.
Efficient Solar Tracking System for Optimum Power Output: A Review.
Journal of Advanced Research in Alternative Energy, Environment and Ecology, [S.l.], v. 7, n. 4, p. 21-25, dec. 2020.
ISSN 2455-3093.
Available at: <http://thejournalshouse.com/index.php/AltEnergy-Ecology-EnvironmentJ/article/view/16>. Date accessed: 04 jan. 2025.
Issue
Section
Review Article