Kishor Pratap Jadhav,
Rohit Praffula Deshmukh,
Sainath Tatyasaheb Kharade,
Saianand Suresh Dhat,
Nagendrakumar Shivaji Naykude,
- Assistant Professor, Department of Electronics and Electrical Engineering, SKN Sinhgad College Of Engineering Korti, Pandharpur, Maharashtra, India
- Student, Department of Electronics and Electrical Engineering, SKN Sinhgad College Of Engineering Korti, Pandharpur, Maharashtra, India
- Student, Department of Electronics and Electrical Engineering, SKN Sinhgad College Of Engineering Korti, Pandharpur, Maharashtra, India
- Student, Department of Electronics and Electrical Engineering, SKN Sinhgad College Of Engineering Korti, Pandharpur, Maharashtra, India
- Student, Department of Electronics and Electrical Engineering, SKN Sinhgad College Of Engineering Korti, Pandharpur, Maharashtra, India
Abstract
Adaptable for maintenance of electrical loads by discharging loads without relying on conventional battery banks, depending on usage and requirement of solar energy. The only system that will receive free electricity for the rest of its life and last for about 20 to 25 years is this one. This system’s batteries need ongoing inverter maintenance at least every two to five years. Therefore, we require a solution strategy of some sort for that. The energy we use is supplied by solar panels and massive solar power facilities located throughout India. We can employ grid-connected solar panels and thermal power plants to cut back on the use of fossil fuels even if the sun does not rise or shine. Harnessing the abundant energy from the sun using solar energy and enabling continuous power supply even during periods of sunlight. This research explores the concept of using solar energy to maintain the load without using direct energy or a battery bank in which special attention is paid to efficiency while reducing the impact on the environment.
Keywords: Solar cells, Load maintenance, Battery backup, Energy storage, Sustainability
[This article belongs to International Journal of Electrical Power and Machine Systems ]
Kishor Pratap Jadhav, Rohit Praffula Deshmukh, Sainath Tatyasaheb Kharade, Saianand Suresh Dhat, Nagendrakumar Shivaji Naykude. Maintaining Load Without Battery Backup Using Solar Panel. International Journal of Electrical Power and Machine Systems. 2024; 02(02):17-22.
Kishor Pratap Jadhav, Rohit Praffula Deshmukh, Sainath Tatyasaheb Kharade, Saianand Suresh Dhat, Nagendrakumar Shivaji Naykude. Maintaining Load Without Battery Backup Using Solar Panel. International Journal of Electrical Power and Machine Systems. 2024; 02(02):17-22. Available from: https://journals.stmjournals.com/ijepms/article=2024/view=190364
References
- Kris De Decker proposed “Direct Solar Power: Off-Grid Without Batteries” Kris De Decker, Low Tech Magazine, August 25, 2023.
- Ministry of Energy and Mineral Resources, Renewable Energy Department ” by Ali Anani 2009 Weis, C. (2013, January). Considerations for Off-Grid PV Systems. Retrieved. https://www.homepower.com/articles/solarelectricity/designinstallation/considerations-grid-pv-systems
- Reliability evaluation of a solar photovoltaic system with and without battery storage. Published in: 2015 Annual IEEE India Conference (INDICON) Date of Conference: 17-20 December 2015 Publisher: IEEE, Conference Location: New Delhi, India.
- Li Y, Wu J. Optimum integration of solar energy with battery energy storage systems. IEEE Transactions on Engineering Management. 2020 Mar 2;69(3):697-707.
- Li Q, Liu Y, Guo S, Zhou H. Solar energy storage in the rechargeable batteries. Nano Today. 2017 Oct 1;16:46-60.
- Steffens F. Solar energy: battery energy storage control. Journal of power sources. 1991 Jun 1;35(1):1-20.
- Hou Y, Vidu R, Stroeve P. Solar energy storage methods. Industrial & engineering chemistry research. 2011 Aug 3;50(15):8954-64.
- Li C, Zhang W, Cho CB, Li T. SolarCore: Solar energy driven multi-core architecture power management. In2011 IEEE 17th international symposium on high performance computer architecture 2011 Feb 12 (pp. 205-216). IEEE.
- Ahmad A, Khan JY. Real-time load scheduling and storage management for solar powered network connected EVs. IEEE Transactions on Sustainable Energy. 2019 Jun 5;11(3):1220-35.
- Groumpos PP, Papegeorgiou G. An optimum load management strategy for stand-alone photovoltaic power systems. Solar Energy. 1991 Jan 1;46(2):121-8.
- Yang Y, Bremner S, Menictas C, Kay M. Battery energy storage system size determination in renewable energy systems: A review. Renewable and Sustainable Energy Reviews. 2018 Aug 1;91:109-25.
- Kaiser R. Optimized battery-management system to improve storage lifetime in renewable energy systems. Journal of Power Sources. 2007 May 25;168(1):58-65.
- Yang Y, Bremner S, Menictas C, Kay M. Modelling and optimal energy management for battery energy storage systems in renewable energy systems: A review. Renewable and Sustainable Energy Reviews. 2022 Oct 1; 167:112671.
- De Decker K. Low-tech Magazine 2012-2018. Kris De Decker; 2019 Mar 18.
| Volume | 02 |
| Issue | 02 |
| Received | 11/11/2024 |
| Accepted | 16/11/2024 |
| Published | 26/11/2024 |
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