LONG-TERM PERFORMANCE PROSPECTS OF SOLAR PANELS (PHOTOVOLTAIC SYSTEMS) AND BATTERIES
Yuklab olish|Download|Скачать

Keywords

Keywords: solar panels, batteries, lithium-ion batteries, energy storage, renewable energy, technological prospects.

How to Cite

Abdugapparova Nazokat Sayfulla qizi. “LONG-TERM PERFORMANCE PROSPECTS OF SOLAR PANELS (PHOTOVOLTAIC SYSTEMS) AND BATTERIES”. World Scientific Research Journal 45, no. 1 (November 25, 2025): 233–238. Accessed September 5, 2026. https://openresearch-hub.com/index.php/wsrj/article/view/554.

Abstract

Annotation: Growing global interest in renewable energy sources has increased the scientific, technical, and economic significance of the long-term performance of solar panels (photovoltaic systems) and their associated energy storage technologies. This article analyzes the lifespan, efficiency, and technological prospects of batteries used in conjunction with solar panels. The main focus is placed on lithium-ion, lead-acid, and next-generation energy storage systems.

The article examines the following issues: battery operating cycles (charge–discharge cycles), degradation mechanisms, the influence of climatic conditions, methods to improve storage efficiency, and the role of energy management systems. The study also provides insights into the environmental and economic aspects of batteries, their recyclability, and anticipated technological advancements in the future. Based on analytical data, the article evaluates the prospects for developing modern battery technologies aimed at maximizing the efficiency of solar energy utilization, their compatibility, and practical implementation scenarios. The findings highlight the decisive importance of energy storage technologies in the transition to alternative energy sources.

Yuklab olish|Download|Скачать

References

1.Green, M. A., Dunlop, E. D., Levi, D. H., Hohl‐Ebinger, J., Yoshita, M., & Ho‐Baillie, A. W. Y. (2019). Solar cell efficiency tables (version 53). Progress in Photovoltaics: Research and Applications, 27(1), 3–12. https://doi.org/10.1002/pip.3102

2. Luo, X., Wang, J., Dooner, M., & Clarke, J. (2015). Overview of current development in electrical energy storage technologies and the application potential in power system operation. Applied Energy, 137, 511–536. https://doi.org/10.1016/j.apenergy.2014.09.081

3. Sohibjon o‘g‘li, Safarmatov Uchqun. "LOW TEMPERATURE SILCORE DEPOSITION OF UNDOPED AND DOPED SILICON FILMS." World scientific research journal 40.2 (2025): 50-60.

https://www.mjstjournal.com/index.php/mjst/article/view/3217

4.Yao, Y., Zhu, P., Zhao, C., & Xu, L. (2022). Emerging sodium-ion batteries: Progress and perspectives. Journal of Power Sources, 527, 231127. https://doi.org/10.1016/j.jpowsour.2022.231127 Mechanical Methods For Eliminating Microcracks In Solar Panels: Efficiency And Technological Possibilities

5. Sohibjon o‘g‘li S. U. MITIGATING POTENTIAL-INDUCED DEGRADATION (PID) IN SOLAR PANELS THROUGH GROUNDING: DIAGNOSTIC AND OPTIMIZATION APPROACHES //World scientific research journal. – 2025. – Т. 40. – №. 2. – С. 44-49.