Supercapacitor-based coordinated synthetic inertia scheme for voltage source converter-based HVDC integrated offshore wind farm
Zhu, Jiebei and Shi, Meiqi and Yu, Lujie and Zhao, Junbo and Bu, Siqi and Chung, Chi Yung and Booth, Campbell D. (2024) Supercapacitor-based coordinated synthetic inertia scheme for voltage source converter-based HVDC integrated offshore wind farm. IET Energy Systems Integration, 6 (1). pp. 5-17. ISSN 2516-8401 (https://doi.org/10.1049/esi2.12137)
Preview |
Text.
Filename: Zhu-etal-IET-ESI-2024-Supercapacitor-based-coordinated-synthetic-inertia-scheme-for-voltage-source-converter-based.pdf
Final Published Version License: Download (13MB)| Preview |
Abstract
A supercapacitor‐based coordinated synthetic inertia (SCSI) scheme for a voltage source converter‐based HVDC (VSC‐HVDC)‐integrated offshore wind farm (OWF) is proposed. The proposed SCSI allows the OWF to provide a designated inertial response to an onshore grid. Under the SCSI scheme, a supercapacitor is added to the DC side of each wind turbine generator via a bidirectional DC/DC converter, varying its voltage along with the offshore frequency to synthesise the desired inertial response. The HVDC grid side VSC employs a DC voltage/frequency droop control to convey the onshore frequency information to DC voltage without communication. Meanwhile, the wind farm side VSC regulates the offshore frequency to couple with the conveyed onshore frequency, considering voltage drop across the DC cables. An offshore frequency switching algorithm is incorporated to avoid undesired SCSI maloperation under offshore faults. The key parameters of the proposed SCSI are optimised through a small signal stability analysis. The effectiveness of the SCSI scheme is evaluated using a modified IEEE 39‐bus test system. The results show that the proposed SCSI scheme can provide required inertial support from WTG‐installed supercapacitors to the onshore grid through the VSC‐HVDC link, significantly improving the onshore frequency stability.
ORCID iDs
Zhu, Jiebei, Shi, Meiqi, Yu, Lujie, Zhao, Junbo, Bu, Siqi, Chung, Chi Yung and Booth, Campbell D. ORCID: https://orcid.org/0000-0003-3869-4477;-
-
Item type: Article ID code: 88806 Dates: DateEvent1 March 2024Published7 February 2024Published Online21 January 2024Accepted17 January 2023SubmittedSubjects: Technology > Electrical engineering. Electronics Nuclear engineering > Production of electric energy or power Department: Faculty of Engineering > Electronic and Electrical Engineering Depositing user: Pure Administrator Date deposited: 18 Apr 2024 14:44 Last modified: 11 Nov 2024 14:16 URI: https://strathprints.strath.ac.uk/id/eprint/88806