The Design and Dynamic Control of a Unified Power Flow Controller with a Novel Algorithm for Obtaining the Least Harmonic Distortion

Author:

Nkembi Armel Asongu1ORCID,Delmonte Nicola12ORCID,Cova Paolo12ORCID,Hoang Minh Long1ORCID

Affiliation:

1. Department of Engineering and Architecture, University of Parma, 43124 Parma, Italy

2. CIDEA—Centro Interdipartimentale per l’Energia e l’Ambiente, University of Parma, 43124 Parma, Italy

Abstract

This study investigates the control and dynamic operation of the Unified Power Flow Controller made of shunt and series converters, a Static Synchronous Compensator, and a Static Synchronous Series Compensator, respectively, connected back-to-back through a common DC-link capacitor. The model of a 48-pulse Voltage Source Converter is constructed from a three-level Neutral Point Clamped converter, which allows the total harmonic distortion to be reduced. An optimal conduction angle tracking system of the three-level inverter is designed to minimize distortion by detecting proper harmonic component elimination. Starting from the six-step modulation strategy, the dq decoupled control schemes of both compensators in open and closed loops are presented. Finally, the MATLAB-Simulink model of the power flow controller is implemented and analyzed. The results show that the controller can track the power changes and apply a suitable voltage to the power system so that the power flow can be controlled. This way, the power flow controller dynamically improves the voltage and power quality across the power network while simultaneously improving the transient stability of the system. It can eliminate all system disturbances resulting from oscillations and harmonics in voltage and current within a very short time. The procedural approach used to model and simulate the Unified Power Flow Controller, as well as the new algorithm used to obtain the harmonic number that minimizes the total harmonic distortion, can be applied to any AC power system.

Funder

Italian “Ministero dell’Istruzione, dell’Università e della Ricerca

European Union

Italian Ministry of University and Research

Publisher

MDPI AG

Reference30 articles.

1. Connected, S., Converter, T.N.P.C., and Zhao, T. (2008, January 10–13). Operation of Series and Shunt Converters with 48-Pulse. Proceedings of the 34th Annual Conference of IEEE Industrial Electronics, Orlando, FL, USA.

2. Design and Dynamic Performance Analysis of a Unified Power Flow Controller;Liu;Proceedings of the IECON Proceedings (Industrial Electronics Conference),2005

3. A Review on Microgrid Decentralized Energy/Voltage Control Structures and Methods;Shirkhani;Energy Rep.,2023

4. A Comprehensive Investigation On the Selection of High-Pass Harmonic Filters;Wang;IEEE Trans. Power Deliv.,2022

5. Sensitivity Analysis Index to Determine the Optimal Location of Multi-Objective UPFC for Improvement of Power Quality Parameters;Zand;Energy Rep.,2023

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