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Paper Title

DESIGN OF ROBUST CURRENT CONTROLLER FOR MULTI-LEVEL BASED STATCOM

Article Identifiers

Registration ID: IJNRD_224359

Published ID: IJNRD2406483

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Keywords

FACTS devices; STATCOM; voltage source converter; multilevel converter; Fuzzy logic controller; power system stability; Power quality.

Abstract

Power system instability is caused by an unexpectedly high amount of electric power transfer over long distances in an infinite direction while satisfying different operational requirements. Devices known as Flexible AC Transmission System (FACTS) have drawn a lot of attention because they can stabilize the power system by adjusting the line voltage and compensating for reactive power lost as a result of imbalanced loads. Therefore, the planning of reactive power management and enhancement of voltage stability are aided by the power system analysis using FACTS devices. The performance of a conventional IEEE-14 Bus system with an optimally positioned Static Synchronous Compensator (STATCOM) based on a 2-level Voltage Source Converter (VSC) and a 3-level Diode-Clamped Multilevel Converter (DCMC) has been assessed by the authors in this study. In order to produce a smooth ride-through output voltage, the switching performance of 2-level and 3-level converters is tested using space vector pulse width modulation (SVPWM), an effective control approach. Additionally, a comparison of simulation results is presented between the voltage stability maintenance capabilities of 2-level and 3-level STATCOM under various linear and nonlinear loads. A simulation conducted in the MATLAB/SIMULINK environment verifies the findings of the investigation on compensating strategies.

How To Cite (APA)

Miss Amruta Nyaykhor & Miss. Vaishali Chavhan (June-2024). DESIGN OF ROBUST CURRENT CONTROLLER FOR MULTI-LEVEL BASED STATCOM . INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT, 9(6), e911-e917. https://ijnrd.org/papers/IJNRD2406483.pdf

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Other Publication Details

Paper Reg. ID: IJNRD_224359

Published Paper Id: IJNRD2406483

Downloads: 000122254

Research Area: Electrical Engineering 

Author Type: Indian Author

Country: amravati, maharashtra, India

Published Paper PDF: https://ijnrd.org/papers/IJNRD2406483.pdf

Published Paper URL: https://ijnrd.org/viewpaperforall?paper=IJNRD2406483

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Call For Paper - Volume 10 | Issue 12 | December 2025

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