Issues of Effective Integration of Solar Power Plant with Local Power Grid
DOI:
https://doi.org/10.37547/ijp/Volume05Issue05-56Keywords:
Solar power plant, electric grid, integration, efficiencyAbstract
The article studies the possibility of improving the most efficient integration of solar power plants (SPP) with the electric grid by analyzing foreign scientific literature. The reasons for the inefficient integration of SPP and the power system are identified based on the results of scientific theoretical and experimental works by leading experts from developed countries. The issues of variability of weather conditions, the influence of external and internal factors on the operation of the network, the use of the most advanced technologies for managing the network, the method of accumulating the generated energy by batteries and their impact on the distortion of the energy parameters of the network are considered. The issues of introducing the technology of modern converters, anti-islanding, protection, forecasting the "sun-grid" system and smart grid are described. The methods of various scientists used in the integration of solar photovoltaic plants to electric grids and their results are discussed. Attention is paid to the development of control algorithms, the creation of simulation schemes of models. The main directions of methods for efficient connection of SPP to electric grids are indicated. Possible cases of failure of power plants, power lines and the safety of the entire system are taken into account. The technical and economic aspects of the problem of the issue under consideration in the construction of integrated systems in hard-to-reach areas of the planet are considered. It is recommended, as an important step, to optimize the implementation of Internet of Things (IoT) technology, smart monitoring of the generation of electrical power received from solar power plants, accumulation and consumption of energy by consumers.
Downloads
References
https://ourworldindata.org/co2-and-greenhouse-gas-emissions
Hariri, M.H.M.; Mat Desa, M.K.; Masri, S.; Zainuri, M.A.A.M. Grid-Connected PV Generation System-Components and ChallenGES: A Review. Energies 2020, 13, 4279. [CrossRef]
Kumar, N. M., Atluri, K., & Palaparthi, S. (2018, March). Internet of Things (IoT) in photovoltaic systems. In 2018 national power engineering conference (NPEC) (pp. 1-4). IEEE.
Kabir M. H. et al. Integrating solar power with existing grids: strategies, technologies, and challenges & REVIEW //International Journal of Science and Engineering. – 2024. – T. 1.–№. 2.–S.48-62.
Xie J. Application of optimized photovoltaic grid-connected control system based on modular multilevel converters //Energy Informatics. – 2024. – T. 7. – №. 1. – S. 24.
Nandhyala L., Saikia L. C., Rajshekar S. Performance improvement and control optimization in grid-integrated PV source with energy storage systems //Journal of Energy Storage. – 2024. – T. 103. – S. 114517.
Alam M. M. et al. An optimal deep belief with buffalo optimization algorithm for fault detection and power loss in grid-connected system //Soft Computing. – 2024. – T. 28. – №. 3. – S. 2577-2591.
R. Singh A. et al. Machine learning-based energy management and power forecasting in grid-connected microgrids with multiple distributed energy sources //Scientific Reports. – 2024. – T. 14. – №. 1. – S. 19207.
Mohammad Rafiei A., Askarzadeh A. An experimental study for efficiency modeling of grid-connected photovoltaic system //Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. – 2024. – T. 46. – №. 1. – S. 475-492.
Amir M. et al. Intelligent energy management scheme‐based coordinated control for reducing peak load in grid‐connected photovoltaic‐powered electric vehicle charging stations //IET Generation, Transmission & Distribution. – 2024. – T. 18. – №. 6. – S. 1205-1222.
Lu D., Peng Y., Sun J. Dual-Stage Optimization Scheduling Model for a Grid-Connected Renewable Energy System with Hybrid Energy Storage //Energies. – 2024. – T. 17. – №. 3. – S. 737.
Ciocia A., Chicco G., Spertino F. An Improved Model for AC Power from Grid Connected Photovoltaic Systems and Comparison with Large-Scale Hourly Measured Data //IEEE Transactions on Industry Applications. – 2024.
Zhao J. et al. Photovoltaic capacity dynamic tracking model predictive control strategy of air-conditioning systems with consideration of flexible loads //Applied Energy. – 2024. – T. 356. – S. 122430.
Abubakar M. et al. Intelligent modeling and optimization of solar plant production integration in the smart grid using machine learning models //Advanced Energy and Sustainability Research. – 2024. – T. 5. – №. 4. – S. 2300160.
Shafiullah, Md, Shakir D. Ahmed, and Fahad A. Al-Sulaiman. "Grid integration challenGES and solution strategies for solar PV systems: A review." IEEE Access 10 (2022): 52233-52257.
Mikhail Tseyko, Anarxan Kasimakhunova, Ivan Rud, Vitalii Tseiko, William Hogland. Zastosowania agrofotowoltaiczne na baize nowych heterostruktur ZnO: Al-p-Ai. ISSUES of sustainable agrokulture, renawable energy and environment protection. monograph. Under the scientific editorship of Prof. Waclaw Romantic and PhD Eng. Kinga Borck. Tom XXX, Falenty-Warsaw 2024. Institute of technology and life sciences national research institute. Pp.67-75.
Кононенко С. В., Головко С. В., Надеев М. А., Павленко В. А. Применение солнечных батарей на объектах морской инфраструктуры. ISSN, Вестник АГТУ. Серия Морская техника и технология, 2018. №3. 2073-1574.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Kasimakhunova Anarkhan Mamasadikovna, Mamarasulov Kudratbek Shukhratbek Ogly

This work is licensed under a Creative Commons Attribution 4.0 International License.