A novel ANFIS-controlled customized UPQC device for power quality enhancement
Power quality is crucial for the reliable and efficient operation of domestic and industrial loads. Nonlinear power electronic converter loads have increased in usage, which has led to a decline in both voltage and current quality. To overcome these power quality issues, a universal power quality co...
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Veröffentlicht in: | Journal of Electrical Systems and Information Technology 2023-12, Vol.10 (1), p.55-22, Article 55 |
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Sprache: | eng |
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Zusammenfassung: | Power quality is crucial for the reliable and efficient operation of domestic and industrial loads. Nonlinear power electronic converter loads have increased in usage, which has led to a decline in both voltage and current quality. To overcome these power quality issues, a universal power quality compensator (UPQC) has been developed and integrated into the power distribution network. The UPQC comprises dual active power filters which are equipped with a DC-link capacitor. The voltage of the DC-link capacitor is controlled by a DC-link voltage controller. However, the conventional PI controller is not suitable for regulating voltage at a defined level due to inappropriate gain values. In this work, we propose an intelligent adaptive neuro-fuzzy inference system-based DC voltage controller for customized UPQC devices. The proposed control scheme aims to mitigate the existing power quality challenges by reducing the issues in classical controllers and incorporating intelligence knowledge with subjective decisions. Using the MATLAB/Simulink software tool, we have tested a customized UPQC device controlled by ANFIS for critical operation and performance. The simulation results are presented along with valid comparisons.
Highlights
Developed Customized Power quality conditioner
Developed novel ANFIS Controller
Hybrid Ant Colony Optimization is used to mitigate power quality issues
UPQC is used to mitigate power quality issues
Different controllers have been used to mitigate the power quality issues |
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ISSN: | 2314-7172 2314-7172 |
DOI: | 10.1186/s43067-023-00121-1 |