Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids

Hybrid AC/DC microgrids (MGs) are comprised of AC and DC MGs interconnected through an interlinking converter (ILC). This paper presents a novel control strategy for double-stage ILCs (consisting of bidirectional DC-DC and DC-AC converters) in islanded hybrid AC/DC microgrids. To provide global powe...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:IEEE Access
المؤلفون الرئيسيون: Mehdi Baharizadeh, Mohammad Sadegh Golsorkhi, Ali Arzani, Thomas Ebel
التنسيق: مقال
اللغة:الإنجليزية
منشور في: IEEE 2025-01-01
الموضوعات:
الوصول للمادة أونلاين:https://ieeexplore.ieee.org/document/11132298/
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author Mehdi Baharizadeh
Mohammad Sadegh Golsorkhi
Ali Arzani
Thomas Ebel
author_facet Mehdi Baharizadeh
Mohammad Sadegh Golsorkhi
Ali Arzani
Thomas Ebel
author_sort Mehdi Baharizadeh
collection DOAJ
container_title IEEE Access
description Hybrid AC/DC microgrids (MGs) are comprised of AC and DC MGs interconnected through an interlinking converter (ILC). This paper presents a novel control strategy for double-stage ILCs (consisting of bidirectional DC-DC and DC-AC converters) in islanded hybrid AC/DC microgrids. To provide global power sharing among AC and DC DERs, a PI controller obtains a single relative power reference for the AC and DC DERs based on the energy content of the DC link capacitor. This relative power is then translated into references for the output voltage angular frequency at the AC side of ILC and the output voltage at its DC side, in accordance with the AC and DC DERs’ droop characteristics. Then the DC-AC and DC-DC converters realize these references through a voltage-controlled method (VCM) in their inner control loops. Accordingly, the proposed method features grid-forming capability at both AC and DC terminals of ILC, which provides it with some unique advantages. First is the improved resiliency; the system remains stable even if all DC DERs are disconnected or all AC DERs are disconnected. Secondly, stability margin and voltage transients are improved thanks to the PLL-less design and adaptation of VCM. Small-signal stability analysis and hardware-in-the-loop test results demonstrate the stability and dynamic performance of the proposed method not only in normal operation but also under DER disconnection. The results show that the steady-state AC and DC voltage deviations are less than 5% and the AC voltage undershoot is less than 1V.
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spelling doaj-art-5366e24fd55f4358ae94cd052d3ef4582025-08-27T23:00:37ZengIEEEIEEE Access2169-35362025-01-011314778414779710.1109/ACCESS.2025.360139811132298Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC MicrogridsMehdi Baharizadeh0https://orcid.org/0000-0002-8633-4487Mohammad Sadegh Golsorkhi1https://orcid.org/0000-0003-0408-729XAli Arzani2https://orcid.org/0000-0002-5879-6967Thomas Ebel3https://orcid.org/0000-0001-8473-4471Centre for Industrial Electronics, Institute of Mechanical and Electrical Engineering, University of Southern Denmark, Sønderborg, DenmarkCentre for Industrial Electronics, Institute of Mechanical and Electrical Engineering, University of Southern Denmark, Sønderborg, DenmarkCenter for Energy Systems Research (CESR), Tennessee Technological University, Cookeville, TN, USACentre for Industrial Electronics, Institute of Mechanical and Electrical Engineering, University of Southern Denmark, Sønderborg, DenmarkHybrid AC/DC microgrids (MGs) are comprised of AC and DC MGs interconnected through an interlinking converter (ILC). This paper presents a novel control strategy for double-stage ILCs (consisting of bidirectional DC-DC and DC-AC converters) in islanded hybrid AC/DC microgrids. To provide global power sharing among AC and DC DERs, a PI controller obtains a single relative power reference for the AC and DC DERs based on the energy content of the DC link capacitor. This relative power is then translated into references for the output voltage angular frequency at the AC side of ILC and the output voltage at its DC side, in accordance with the AC and DC DERs’ droop characteristics. Then the DC-AC and DC-DC converters realize these references through a voltage-controlled method (VCM) in their inner control loops. Accordingly, the proposed method features grid-forming capability at both AC and DC terminals of ILC, which provides it with some unique advantages. First is the improved resiliency; the system remains stable even if all DC DERs are disconnected or all AC DERs are disconnected. Secondly, stability margin and voltage transients are improved thanks to the PLL-less design and adaptation of VCM. Small-signal stability analysis and hardware-in-the-loop test results demonstrate the stability and dynamic performance of the proposed method not only in normal operation but also under DER disconnection. The results show that the steady-state AC and DC voltage deviations are less than 5% and the AC voltage undershoot is less than 1V.https://ieeexplore.ieee.org/document/11132298/Distributed energy resourcesgrid-forming convertershybrid AC/DC microgridinterlinking converter
spellingShingle Mehdi Baharizadeh
Mohammad Sadegh Golsorkhi
Ali Arzani
Thomas Ebel
Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
Distributed energy resources
grid-forming converters
hybrid AC/DC microgrid
interlinking converter
title Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
title_full Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
title_fullStr Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
title_full_unstemmed Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
title_short Dual-Port Grid-Forming Control of Double-Stage Interlinking Converters in Islanded Hybrid AC/DC Microgrids
title_sort dual port grid forming control of double stage interlinking converters in islanded hybrid ac dc microgrids
topic Distributed energy resources
grid-forming converters
hybrid AC/DC microgrid
interlinking converter
url https://ieeexplore.ieee.org/document/11132298/
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AT aliarzani dualportgridformingcontrolofdoublestageinterlinkingconvertersinislandedhybridacdcmicrogrids
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