Solar Tree

Volume: 10 | Issue: 01 | Year 2024 | Subscription
International Journal of Renewable Energy and its Commercialization
Received Date: 06/11/2024
Acceptance Date: 07/05/2024
Published On: 2024-08-02
First Page: 10
Last Page: 17

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By: Adithya Shaji E, Arya A, Althaf P S, Vysakh N B, and Reshmi K Raj

1-4Student, Electrical and electronics engineering, College of engineering, kidangoor, India
5Assistant Professor, Electrical and electronics engineering, College of engineering, kidangoor, India

Abstract

A solar tree is an artistic and functional installation that takes inspiration from the natural form of a tree, utilizing solar panels arranged as leaves to capture sunlight and convert it into electrical energy. These eco-friendly structures are often found in space-constrained urban settings, where they not only generate power but also provide shade and serve as visual symbols of green energy. Solar trees are composed of several key parts: the solar panels which gather and convert solar energy, the branches that hold the panels, the trunk which supports the structure and contains the wiring, and the base that keeps the tree anchored and stable. Beyond their usefulness, solar trees also contribute to public education about the advantages and potential of renewable energy. Our project aims to harness solar energy efficiently through an innovative design inspired by natural trees. Our system incorporates a combined 50 watts of solar panel power mounted on a tree-like structure, allowing for optimal sunlight exposure. To enhance energy conversion, we employ a Maximum Power Point Tracking (MPPT) solar charge controller, utilizing the Perturb and Observe algorithm. The MPPT controller dynamically adjusts the panel’s operating voltage and current to maximize power output, ensuring efficient utilization of available sunlight. This solar tree serves as a sustainable and aesthetically pleasing solution for clean energy generation in urban and outdoor environments.

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Citation:

How to cite this article: Adithya Shaji E, Arya A, Althaf P S, Vysakh N B, and Reshmi K Raj, Solar Tree. International Journal of Renewable Energy and its Commercialization. 2024; 10(01): 10-17p.

How to cite this URL: Adithya Shaji E, Arya A, Althaf P S, Vysakh N B, and Reshmi K Raj, Solar Tree. International Journal of Renewable Energy and its Commercialization. 2024; 10(01): 10-17p. Available from:https://journalspub.com/publication/solar-tree/

Refrences:

[1] Teguh Tri Lusijarto, Agus Risdiyanto, Noviadi Arief Rachman, Iman Abdurahman, Modelling and Simulation of Closed Loop Buck Converter to Supply Constant DC Load for Single Solar PV Panel”, International Conference on Sustainable Energy Engineering and Application (ICSEEA) 2018
[2] Chetan S. Matwankar, Aftab Alam, “Solar Powered Closed-loop Current Controlled DC-DC Buck Converter for Battery Charging Application”, International Conference on Vision Towards Emerging Trends in Communication and Networking (ViTECoN) 2019
[3] Stefanie R. Schwab, Thiago S. Rocha, Sofía P. Simonetti, Domingos S. L. Simonetti, “A FIRST ORDER MODEL PLUS A BUCK CONVERTER EMULATING A SOLAR PANEL”, Power Electronics and Drives Laboratory – Federal University of Espírito Santo Vitória – Espírito Santo, Brazil 2017
[4] Wanjin Wang, Rongshan We, Yadong Yin, “Efficiency-based power MOSFETs size optimization method for DC–DC buck converters”, 20th International Symposium on Power Electronics (Ee), October 23 – 26, 2019, Novi Sad, Serbia 2019
[5] Ankit Chadha, Agasthya Ayachit, Dalvir K. Saini, and Marian K. Kazimierczuk,“ Steady- State Analysis of PWM Tapped-Inductor buck DC-DC Converter in CCM” 2018 IEEE, Wright State University, Dayton, Ohio, USA 45324.
[6] Z. Iqbal, U. Nasir, M. T. Rasheed and K. Munir, “A comparative analysis of synchronous buck, isolated buck and buck converter,” 2015 IEEE 15th International Conference on Environment and Electrical Engineering (EEEIC), Rome, 2015, pp. 992-996, doi: 10.1109/EEEIC.2015.7165299.
[7] Mostafa Ame, Ahmed Abuelnasr, Ahmed Ragab, Ahmad Hassan, Mohamed Ali, Benoit Gosselin, Mohamad Sawan, “Design and Analysis of Combined Input-Voltage Feedforward and P Controllers for the Buck Converter”, 2021
[8] Manoj Kumar Kar: ” Design and Analysis of MPPT charge controller “: conference paper. August 2022
[9] Indresh Yadav, SulabhSachan, Sanjay Kumar Maurya Sanchari Deb” Effective battery charging systemusing step voltage and step duty size-based MPPT con- troller for solar PV system”: https://doi.org/10.1016/j.egyr.2023.07.033
[10] Md. Atiqur Rahaman, Md. Rubaiat Uddin: “A Μ.Α. Martin, Apurba Sanker, cost effective solar charge controller”: https://ijret.org/volumes/2015v04/103/IJRET20150403052.pdf
[11] M.Premkumar, R. Sow mya, K.Karthick “A dataset of the study on design parameters for the solar photovoltaic charge controller” : https://doi.org/10.1016/j.dib.2018.11.064
[12] FarukSani, H.N Yahya, M. Momoh “Design and construction of microcontroller-based charge controller for photovoltaic application”: reference paper. January 2014.
[13] Kumar, R, Bansal, K, Kumar, A, Yadav, J, Gupta, MK, Singh,” Renewable energy adoption: Design, development, and assessment of solar tree for the mountainous region”, Int J Energy Res. 2021; 1- 17
[14] Tan, N. M. L., Abe, T., Akagi, H. (2012). “Design and Performance of a Bidirectional Isolated DC–DC Converter for a Battery Energy Storage System”. IEEE Transactions on Power Electronics, 27(3), 1237–1248. doi:10.1109/tpel.2011.2108317
[15] Pavan Gangwar, Ravi Pratap Tripathi Ashutosh Kumar Singh, “Solar photovoltaic tree: a review of designs, performance, applications, and challenges, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects”,2021.
[16] Kar, Sasmita, “Design of solar tree with photovoltaic panel using phyllotaxis phenomenon,” inInternational Conference on Computational Intelligence for Smart Power System and Sustainable Energy (CISPSSE), 2020, pp. 1–4
[17] Rajaee, Meraj and Jalali, Mina, “Analysis and implementation of the solar tree by determining the optimal angle in Shiraz-Iran,” in Journal of Computational amp; Applied Research in Mechanical Engineering (JCARME), 2021.