Copyright © 2025 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
@article{153133, author = {parigela sunitha and Keerthi Bashyaboina and Dr.D.v.v.v.ch Mouli}, title = {Performance Study on PV Integrated UPQC under Unbalanced load Conditions}, journal = {International Journal of Innovative Research in Technology}, year = {}, volume = {8}, number = {5}, pages = {674-678}, issn = {2349-6002}, url = {https://ijirt.org/article?manuscript=153133}, abstract = {The design and standard performance of a 3-phase single-stage solar photovoltaic integrated-unified power quality conditioner described in this article (PV-UPQC). Shunt and series attached voltage control scheme are connected back to back with standard DC-link in the PV-UPQC. The drain compensator serves a dual purpose: it extracts electricity from the PV array it also correcting for load voltage harmonics. PVUPQC's performance improves as a result of this. The suggested structure provides the best of clean energy generation with improved power supply. The project strength and deformation capabilities are estimated using MATLAB-Simulink simulations under a non-linear load. Overvoltage fluctuations are used to test the study's validity. In other words, only the R-phase provides sag/swell circumstances, while the remaining two phases provide continuous supply. The system's method is measured using a fuzzy management system under imbalanced load circumstances such as sag and swells.}, keywords = {}, month = {}, }
Cite This Article
Submit your research paper and those of your network (friends, colleagues, or peers) through your IPN account, and receive 800 INR for each paper that gets published.
Join NowNational Conference on Sustainable Engineering and Management - 2024 Last Date: 15th March 2024
Submit inquiry