Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.
Abstract & Details
Research Area
Power system and control
Keywords
Solar
Pv
Grid
Autoselection.
Abstract
Despite the rapid growth of the photovoltaic (PV) industry, most of the energy demand in the India is supplied by fossil fuel power plants. One of the main reasons for this is that PV is non-dispatchable, meaning it is limited to times when the sun is shining. Because of this, utilities must maintain reliable grid infrastructure for times when PV is not available but there is still demand, such as in the evening when the sun has gone down but the electricity demand is greatest. This leads to electricity infrastructure going unutilized much of the time, wasting valuable resources while fossil fuel power plants are still harming the environment. The non-dispatchable nature of PV limits the amount of PV that can be connected to the grid. One remedy for this limit is to add energy storage to PV systems, or to shift deferrable loads from times of peak electricity demand to times when the sun is shining. With storage, batteries can be charged when the sun is shining, and discharged when the electricity demand is highest. Energy storage and load shifting allow more loads to be met locally rather than importing energy from the grid, or exporting excess PV production to the grid. This process is known as self-consumption. v This study compares the levels of self-consumption in a PV self-consumption system with and without the use of battery-based energy storage. It also compares four different load shifting load profiles against a baseline load profile without load shifting.
License
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Commons
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Bhuneshwari sahu | RSR Rungta college of engineering & Technology, Bhilai |
| 2 | Chitransh Tiwari | RSR Rungta college of engineering & Technology, Bhilai |
| 3 | Hitendra Thakur | RSR Rungta college of engineering & Technology, Bhilai |
How to Cite
Use the following formats to cite this article in your research.
APA Style
sahu, Bhuneshwari, Tiwari, Chitransh, & Thakur, Hitendra (2023). Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.. International Journal of Advance Research and Innovative Ideas In Education, 9(4), 1562-1573.
MLA Style
sahu, Bhuneshwari, et al. "Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.." International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 4, 2023, pp. 1562-1573.
IEEE Style
Bhuneshwari sahu, Chitransh Tiwari, and Hitendra Thakur, "Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.," International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 4, pp. 1562-1573, 2023.
Vancouver Style
sahu Bhuneshwari, Tiwari Chitransh, Thakur Hitendra. Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.. International Journal of Advance Research and Innovative Ideas In Education. 2023;9(4):1562-1573.
Harvard Style
sahu, Bhuneshwari, Tiwari, Chitransh, & Thakur, Hitendra (2023) 'Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.', International Journal of Advance Research and Innovative Ideas In Education, 9(4), pp. 1562-1573.
Chicago Style
sahu, Bhuneshwari, Chitransh Tiwari, and Hitendra Thakur. "Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.." International Journal of Advance Research and Innovative Ideas In Education 9, no. 4 (2023): 1562-1573.
Turabian Style
sahu, Bhuneshwari, Chitransh Tiwari, and Hitendra Thakur. "Design of an Efficient control system for stable Integration and smooth operation of Microgrid using MATLABSimulink.." International Journal of Advance Research and Innovative Ideas In Education 9, no. 4 (2023): 1562-1573.
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