Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids

Droop-based techniques have widely been utilized in controlling voltage source inverter based distributed generation units within a microgrid. Advantages of droop based control have been extensively discussed, while its effects on stability and power quality of the inverter based microgrids have not...

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Main Authors: Babak Keyvani-Boroujeni, Bahador Fani, Ghazanfar Shahgholian, Hassan Haes Alhelou
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9585594/
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author Babak Keyvani-Boroujeni
Bahador Fani
Ghazanfar Shahgholian
Hassan Haes Alhelou
author_facet Babak Keyvani-Boroujeni
Bahador Fani
Ghazanfar Shahgholian
Hassan Haes Alhelou
author_sort Babak Keyvani-Boroujeni
collection DOAJ
description Droop-based techniques have widely been utilized in controlling voltage source inverter based distributed generation units within a microgrid. Advantages of droop based control have been extensively discussed, while its effects on stability and power quality of the inverter based microgrids have not been explicitly studied. This paper addresses this gap by analyzing the stability of islanded microgrid with focusing on power quality problems. From this viewpoint, current paper studies the effect of parameters change on the stability margin of the microgrid using a bifurcation analysis approach. To this end, this work firstly derives a dynamic model of a microgrid including controllers of the inverter, network and loads. Based on this model, the loci of the system eigenvalues have been analyzed, showing that, by changing the droop coefficients, the hopf and period doubling bifurcation can occur in such a system. Furthermore, the droop tuning procedure may also cause the system to experience the flicker phenomenon in advance of the instability. Next, a virtual impedance-based solution is presented to avoid the flicker as well as instability problems. Finally, the efficacy of the proposed method is proved on a practical network.
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spelling doaj.art-443fbf5d29ea491080f71d5ab829c2892022-12-21T21:25:09ZengIEEEIEEE Access2169-35362021-01-01914499914501110.1109/ACCESS.2021.31228009585594Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated MicrogridsBabak Keyvani-Boroujeni0https://orcid.org/0000-0002-4640-0072Bahador Fani1https://orcid.org/0000-0002-8820-2269Ghazanfar Shahgholian2https://orcid.org/0000-0003-2774-4694Hassan Haes Alhelou3https://orcid.org/0000-0002-7427-2848Department of Electrical Engineering, Boroujen Branch, Islamic Azad University, Boroujen, IranDepartment of Electrical Engineering, Najafabad Branch, Islamic Azad University, Najafabad, IranDepartment of Electrical Engineering, Najafabad Branch, Islamic Azad University, Najafabad, IranDepartment of Electrical Power Engineering, Tishreen University, Lattakia, SyriaDroop-based techniques have widely been utilized in controlling voltage source inverter based distributed generation units within a microgrid. Advantages of droop based control have been extensively discussed, while its effects on stability and power quality of the inverter based microgrids have not been explicitly studied. This paper addresses this gap by analyzing the stability of islanded microgrid with focusing on power quality problems. From this viewpoint, current paper studies the effect of parameters change on the stability margin of the microgrid using a bifurcation analysis approach. To this end, this work firstly derives a dynamic model of a microgrid including controllers of the inverter, network and loads. Based on this model, the loci of the system eigenvalues have been analyzed, showing that, by changing the droop coefficients, the hopf and period doubling bifurcation can occur in such a system. Furthermore, the droop tuning procedure may also cause the system to experience the flicker phenomenon in advance of the instability. Next, a virtual impedance-based solution is presented to avoid the flicker as well as instability problems. Finally, the efficacy of the proposed method is proved on a practical network.https://ieeexplore.ieee.org/document/9585594/Droop controlpower qualitystabilitymicrogrid
spellingShingle Babak Keyvani-Boroujeni
Bahador Fani
Ghazanfar Shahgholian
Hassan Haes Alhelou
Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
IEEE Access
Droop control
power quality
stability
microgrid
title Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
title_full Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
title_fullStr Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
title_full_unstemmed Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
title_short Virtual Impedance-Based Droop Control Scheme to Avoid Power Quality and Stability Problems in VSI-Dominated Microgrids
title_sort virtual impedance based droop control scheme to avoid power quality and stability problems in vsi dominated microgrids
topic Droop control
power quality
stability
microgrid
url https://ieeexplore.ieee.org/document/9585594/
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