Enhancing Grid Efficiency in Yavatmal: A Case Study on Advanced Efficient Storage System
DOI:
https://doi.org/10.32628/IJSRSET251294Keywords:
Energy, Storage, System, Smart, Grid, Yavatmal, Grid Energy Management, Battery Energy Storage, Renewable Energy IntegrationAbstract
As growing population in this world, the power consumption is increasing with respect the population, at this time more solar and wind power generation work together generate the power own field. at this time too much shorter of the energy consumption that is require to store some energy. Due to some mismatch of peal hour demand consumption of power, it is necessary to store the energy. The smart grid defined as the something of the ecosystem with communicate with the virtual self- ware system also it will require some advanced tool for planning and operations. In some year back mostly, smart grid used in renewable energy due to economical and environment friendly. Energy storage system with collaboration of smart grid gives a bright impact on our future. With the help of various communication and control feature it is possible to established the energy storage system as well as battery storage system. This paper gives all the detailed to store the energy in smart grid manner. The adoption of Smart Grid devices throughout utility networks will affect tremendous change in grid operations and usage of electricity over the next two decades. The changes in ways to control loads, coupled with increased penetration of renewable energy sources, offer a new set of challenges in balancing consumption and generation. Increased deployment of energy storage devices in the distribution grid will help make this process happen more effectively and improve system performance. This paper addresses the new types of storage being utilized for grid support and the ways they are integrated into the grid.
Downloads
References
X. Fang, S. Misra, G. Xue and D. Yang, "Smart Grid – The New and Improved Power Grid: A Survey," IEEE Commun. Surv. Tutor., vol. 14, no. 4, pp. 944–980, Fourth Quarter 2012, doi: 10.1109/SURV.2011.101911.00087.
V. C. Gungor et al., "Smart Grid Technologies: Communication Technologies and Standards," IEEE Trans. Ind. Informat., vol. 7, no. 4, pp. 529–539, Nov. 2011, doi: 10.1109/TII.2011.2166794.
A. Mahmood, N. Javaid and S. Razzaq, "A review of wireless communications for smart grid," Renew. Sustain. Energy Rev., vol. 41, pp. 248–260, Jan. 2015, doi: 10.1016/j.rser.2014.08.036.
H. Li and J. Zhang, "Applications of artificial intelligence in smart grid: A review," Energy Procedia, vol. 158, pp. 2266–2271, Feb. 2019, doi: 10.1016/j.egypro.2019.01.399.
T. M. Olatunde et al., "The impact of smart grids on energy efficiency: a comprehensive review," Eng. Sci. Technol. J., vol. 5, no. 4, pp. 1257–1269, 2024.
S. A. Wani and K. Tomar, "Smart Grid System Using IoT," Int. J. Innov. Res. Comput. Sci. Technol. (IJIRCST), vol. 10, no. 3, pp. 6–8, 2022, doi: 10.55524/ijircst.2022.10.3.2.
V. Kushwaha and A. Ali, "Environmental, Techno-Economic Feasibility Analysis of Grid-Connected Photovoltaic Power Plants in Subtropical Region," Int. J. Res. Dev. Appl. Sci. Eng., vol. 23, no. 1, 2023.
I. Stojmenovic and S. Wen, "The Fog Computing Paradigm: Scenarios and Security Issues," in Proc. 2014 Federated Conf. Comput. Sci. Inf. Syst., Warsaw, Poland, 2014, pp. 1–8, doi: 10.15439/2014F503.
V. Kushawaha, R. Yadav, A. Rawat and A. Verma, "Enhancement of Voltage Profile in Transmission Line Using DSTATCOM and DVR," Int. J. Adv. Comput. Technol., vol. 10, no. 6, pp. 1–5, 2021.
A. R. Metke and R. L. Ekl, "Smart grid security technology," in 2010 Innovative Smart Grid Technologies (ISGT), Jan. 2010, pp. 1–7.
M. T. A. Khan, R. Cisneros, A. Chakrabortty and I. Husain, "Coordinated Control of Energy Storage in Networked Microgrids under Unpredicted Load Demands," arXiv preprint, arXiv:1804.05123, 2018.
Z. Yuan, A. Zecchino, R. Cherkaoui and M. Paolone, "Real-time Control of Battery Energy Storage Systems to Provide Ancillary Services Considering Voltage-Dependent Capability of DC-AC Converters," arXiv preprint, arXiv:2006.12850, 2020.
Y. Li et al., "Incorporating Energy Storage and User Experience in Isolated Microgrid Dispatch Using a Multi-objective Model," arXiv preprint, arXiv:1901.08466, 2019.
T. Wang, D. O'Neill and H. Kamath, "Dynamic Control and Optimization of Distributed Energy Resources in a Microgrid," arXiv preprint, arXiv:1410.0054, 2014.
T. Morstyn, B. Hredzak, R. P. Aguilera and V. G. Agelidis, "Model Predictive Control for Distributed Microgrid Battery Energy Storage Systems," arXiv preprint, arXiv:1702.04699, 2017.
S. Sun, B. Liang, M. Dong and J. A. Taylor, "Phase Balancing Using Energy Storage in Power Grids under Uncertainty," arXiv preprint, arXiv:1505.03187, 2015.
S. A. Alavi et al., "A Distributed Event-Triggered Control Strategy for DC Microgrids Based on Publish-Subscribe Model Over Industrial Wireless Sensor Networks," arXiv preprint, arXiv:1906.03623, 2019.
S. Karagiannopoulos, J. Gallmann, M. González Vayá, P. Aristidou and G. Hug, "Active Distribution Grids Offering Ancillary Services in Islanded and Grid-Connected Mode," IEEE Trans. Smart Grid, vol. 11, no. 1, pp. 623–633, Jan. 2020.
X. Zhang, G. Hug, J. Z. Kolter and I. Harjunkoski, "Demand Response of Ancillary Service from Industrial Loads Coordinated with Energy Storage," IEEE Trans. Power Syst., vol. 33, no. 1, pp. 951–961, Jan. 2018.
G. Hug, "Integration of Optimal Storage Operation into Marginal Cost Curve Representation," Energy Syst., vol. 7, no. 3, pp. 391–409, 2016.
E. Pashajavid, F. Shahnia and A. Ghosh, "50th International Universities Power Engineering Conference (UPEC)," 2015.
F. Shahnia and S. Bourbour, "A Practical and Intelligent Technique for Coupling Multiple Neighboring Microgrids at the Synchronization Stage," Sustain. Energy, Grids Netw., 2017.
J. Susanto, F. Shahnia, A. Ghosh and S. Rajakaruna, "Australasian Universities Power Engineering Conference (AUPEC)," 2014.
A. Arefi and F. Shahnia, "Tertiary Controller-Based Optimal Voltage and Frequency Management Technique for Multi-Microgrid Systems of Large Remote Towns," IEEE Trans. Smart Grid, Early Access.
F. Shahnia, S. Bourbour and A. Ghosh, "Coupling Neighboring Microgrids for Overload Management Based on Dynamic Multicriteria Decision-Making," IEEE Trans. Smart Grid, Early Access.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 International Journal of Scientific Research in Science, Engineering and Technology

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