Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids

Stability problems are increasing in current power systems with a large number of electronic converters, such as microgrids (MGs) and microgrid clusters (MGCs). Frequency-domain methods, commonly used to analyse traditional power system stability, can also be extended to MGs. In particular, the posi...

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Main Authors: Oriol Cartiel, Pablo Horrillo-Quintero, Juan-José Mesas, Pablo García-Triviño, Raúl Sarrias-Mena, Luis M. Fernández-Ramírez, Luis Sainz
Format: Article
Language:English
Published: MDPI AG 2025-06-01
Series:Energies
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Online Access:https://www.mdpi.com/1996-1073/18/12/3089
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author Oriol Cartiel
Pablo Horrillo-Quintero
Juan-José Mesas
Pablo García-Triviño
Raúl Sarrias-Mena
Luis M. Fernández-Ramírez
Luis Sainz
author_facet Oriol Cartiel
Pablo Horrillo-Quintero
Juan-José Mesas
Pablo García-Triviño
Raúl Sarrias-Mena
Luis M. Fernández-Ramírez
Luis Sainz
author_sort Oriol Cartiel
collection DOAJ
description Stability problems are increasing in current power systems with a large number of electronic converters, such as microgrids (MGs) and microgrid clusters (MGCs). Frequency-domain methods, commonly used to analyse traditional power system stability, can also be extended to MGs. In particular, the positive-mode-damping (PMD) stability criterion is a simple and practical method to evaluate the stability of multi-terminal power electronics-based systems, making it a powerful tool for addressing stability issues in MGCs. This paper extends the application of the PMD stability criterion to assess stability in MGC-integrated transmission grids. Moreover, it presents two bandpass filter-based active and passive damping compensators and examines their effectiveness in mitigating instabilities in MGCs. A modified IEEE three-bus power system integrating an MGC is used to conduct a small-signal harmonic stability study and apply active and passive damping solutions with the PMD stability criterion. The modified IEEE three-bus power system is implemented in real-time simulations using a hardware-in-the-loop setup with OPAL-RT4512 to validate the results obtained from MATLAB/Simulink R2022a simulations.
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institution Kabale University
issn 1996-1073
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publisher MDPI AG
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series Energies
spelling doaj-art-0ac08bd90b1b4863bfcadc6ea45e925e2025-08-20T03:24:33ZengMDPI AGEnergies1996-10732025-06-011812308910.3390/en18123089Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission GridsOriol Cartiel0Pablo Horrillo-Quintero1Juan-José Mesas2Pablo García-Triviño3Raúl Sarrias-Mena4Luis M. Fernández-Ramírez5Luis Sainz6Department of Electrical Engineering (DEE), Escola Tècnica Superior d’Enginyeria Industrial de Barcelona (ETSEIB), Universitat Politècnica de Catalunya—BarcelonaTech (UPC), Av. Diagonal 647, 08028 Barcelona, SpainResearch Group in Sustainable and Renewable Electrical Technologies—SURET (PAIDI-TEP-023), Department of Electrical Engineering, ETSIA, University of Cádiz, Avda. Ramón Puyol, s/n, 11202 Algeciras, SpainDepartment of Electrical Engineering (DEE), Escola d’Enginyeria de Barcelona Est (EEBE), Universitat Politècnica de Catalunya—BarcelonaTech (UPC), Av. d’Eduard Maristany 16, 08019 Barcelona, SpainResearch Group in Sustainable and Renewable Electrical Technologies—SURET (PAIDI-TEP-023), Department of Electrical Engineering, ETSIA, University of Cádiz, Avda. Ramón Puyol, s/n, 11202 Algeciras, SpainResearch Group in Sustainable and Renewable Electrical Technologies—SURET (PAIDI-TEP-023), Department of Engineering in Automation, Electronics and Computer Architecture & Networks, ETSIA, University of Cádiz, Avda. Ramón Puyol, s/n, 11202 Algeciras, SpainResearch Group in Sustainable and Renewable Electrical Technologies—SURET (PAIDI-TEP-023), Department of Electrical Engineering, ETSIA, University of Cádiz, Avda. Ramón Puyol, s/n, 11202 Algeciras, SpainDepartment of Electrical Engineering (DEE), Escola Tècnica Superior d’Enginyeria Industrial de Barcelona (ETSEIB), Universitat Politècnica de Catalunya—BarcelonaTech (UPC), Av. Diagonal 647, 08028 Barcelona, SpainStability problems are increasing in current power systems with a large number of electronic converters, such as microgrids (MGs) and microgrid clusters (MGCs). Frequency-domain methods, commonly used to analyse traditional power system stability, can also be extended to MGs. In particular, the positive-mode-damping (PMD) stability criterion is a simple and practical method to evaluate the stability of multi-terminal power electronics-based systems, making it a powerful tool for addressing stability issues in MGCs. This paper extends the application of the PMD stability criterion to assess stability in MGC-integrated transmission grids. Moreover, it presents two bandpass filter-based active and passive damping compensators and examines their effectiveness in mitigating instabilities in MGCs. A modified IEEE three-bus power system integrating an MGC is used to conduct a small-signal harmonic stability study and apply active and passive damping solutions with the PMD stability criterion. The modified IEEE three-bus power system is implemented in real-time simulations using a hardware-in-the-loop setup with OPAL-RT4512 to validate the results obtained from MATLAB/Simulink R2022a simulations.https://www.mdpi.com/1996-1073/18/12/3089damping compensatorsharmonic stabilitymicrogrid clusterOPAL-RTpositive-mode dampingstability assessment
spellingShingle Oriol Cartiel
Pablo Horrillo-Quintero
Juan-José Mesas
Pablo García-Triviño
Raúl Sarrias-Mena
Luis M. Fernández-Ramírez
Luis Sainz
Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
Energies
damping compensators
harmonic stability
microgrid cluster
OPAL-RT
positive-mode damping
stability assessment
title Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
title_full Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
title_fullStr Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
title_full_unstemmed Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
title_short Positive-Mode-Damping Stability Criterion Application and Damping Solutions in Microgrid-Integrated Transmission Grids
title_sort positive mode damping stability criterion application and damping solutions in microgrid integrated transmission grids
topic damping compensators
harmonic stability
microgrid cluster
OPAL-RT
positive-mode damping
stability assessment
url https://www.mdpi.com/1996-1073/18/12/3089
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