Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile
Abstract & Details
Research Area
Electrical Engineering
Keywords
Radial distribution system
Distribution network reconfiguration
voltage deviation
Voltage stability
Distributed Generation
Abstract
Power loss and voltage instability are major problems in distribution systems. However, these problems are typically mitigated by efficient network reconfiguration, including the integration of distributed generation (DG) units in the distribution network. In this regard, the optimal placement and sizing of DGs are crucial. Otherwise, the network performance will be degraded. This study is conducted to optimally locate and sizing of DGs into a radial distribution network before and after reconfiguration. A multi-objective particle swarm optimization algorithm is utilized to determine the optimal placement and sizing of the DGs before and after reconfiguration of the radial network. An optimal network configuration with DG coordination in an active distribution network overcomes power losses, uplifts voltage profiles, and improves the system stability, reliability, and efficiency. For considering the actual power system scenarios, a penalty factor is also considered, this penalty factor plays a crucial role in the minimization of total power loss and voltage profile enhancement. The simulation results showed a significant improvement in the percentage power loss reduction (32% and 68.05% before and after reconfiguration, respectively) with the inclusion of DG units in the test system. Similarly, the minimum bus voltage of the system is improved by 4.9% and 6.53% before and after reconfiguration, respectively. The comparative study is performed, and the results showed the effectiveness of the proposed method in reducing the voltage deviation and power loss of the distribution system. The proposed algorithm is evaluated on the IEEE-33 bus radial distribution system, using MATLAB software.
License
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Vishal Chaudhari | M. Tech Scholar in Dr. A.P.J Abdul Kalam University, Indore, Madhya Pradesh, India |
| 2 | Dr. Rahul Mishra | Associate Professor in Dr. A.P.J Abdul Kalam University, Indore, Madhya Pradesh, India |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Chaudhari, Vishal & Mishra, Dr. Rahul (2021). Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile. International Journal of Advance Research and Innovative Ideas In Education, 7(5), 1107-1115.
MLA Style
Chaudhari, Vishal, and Dr. Rahul Mishra. "Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile." International Journal of Advance Research and Innovative Ideas In Education, vol. 7, no. 5, 2021, pp. 1107-1115.
IEEE Style
Vishal Chaudhari and Dr. Rahul Mishra, "Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile," International Journal of Advance Research and Innovative Ideas In Education, vol. 7, no. 5, pp. 1107-1115, 2021.
Vancouver Style
Chaudhari Vishal, Mishra Dr. Rahul. Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile. International Journal of Advance Research and Innovative Ideas In Education. 2021;7(5):1107-1115.
Harvard Style
Chaudhari, Vishal & Mishra, Dr. Rahul (2021) 'Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile', International Journal of Advance Research and Innovative Ideas In Education, 7(5), pp. 1107-1115.
Chicago Style
Chaudhari, Vishal and Dr. Rahul Mishra. "Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile." International Journal of Advance Research and Innovative Ideas In Education 7, no. 5 (2021): 1107-1115.
Turabian Style
Chaudhari, Vishal and Dr. Rahul Mishra. "Reconfiguring A Radial Distribution Network to Reduce Losses and Enhance Voltage Profile." International Journal of Advance Research and Innovative Ideas In Education 7, no. 5 (2021): 1107-1115.
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