Programs
- M. Tech. in Automotive Engineering -Postgraduate
- B. Sc. (Hons.) Biotechnology and Integrated Systems Biology -Undergraduate
Publication Type : Conference Paper
Publisher : IEEE
Source : 2024 IEEE International Conference on Smart Power Control and Renewable Energy (ICSPCRE)
Url : https://doi.org/10.1109/icspcre62303.2024.10675236
Campus : Bengaluru
School : School of Engineering
Department : Electrical and Electronics
Year : 2024
Abstract : The development of renewable energy sources is related to the shift made in the direction of sustainability and the environmental impact of power generation. However, the increasing role of intermittent and therefore less stable energy sources results in a new concern, which is the necessity to ensure the stability and reliability of power distribution. In this regard, an integrated modelling framework for micro-grid systems is provided in the implemented model. The framework is being introduced to increase the resilience and the effectiveness of renewable energy use. The model runs versatile energy storage and reactive power compensation technologies to execute the best scheme of micro-grid system operation under different conditions. Detailed modelling is being proposed for the attempted minimization of operational expenditures and ensuring a constant and reliable power supply to consumers. Results demonstrate the effectiveness of the approach in improving the performance and economic viability of micro-grid systems, contributing to sustainable energy infrastructure advancement.
Cite this Research Publication : Rhethika S, Akash Shenoy, Satyam Sharma, P. V. Manitha, Integrated Modelling of a Micro-Grid System with Energy Storage and Reactive Power Compensation, 2024 IEEE International Conference on Smart Power Control and Renewable Energy (ICSPCRE), IEEE, 2024, https://doi.org/10.1109/icspcre62303.2024.10675236