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March 6, 2026IET conference proceedings.0 citations

Offshore wind blackstart & restoration: state-of-the-art literature review

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LNLeonel NorisOSOscar Saborío‐RomanoDMDaniel Müller

Key Points

  • This work aims to synthesize offshore wind power plants' blackstart capabilities and identify research gaps.
  • Literature review of offshore wind blackstart systems
  • Analysis of grid-forming controls in wind turbine generators
  • Identification of six critical research gaps for development
  • Evaluation of performance metrics from electromagnetic transient studies
  • Limited GFM wind turbine generators can energize AC cables and transformers.
  • Current guidelines focus predominantly on synchronous generators.
  • GFM-controlled offshore wind power plants show promise as blackstart resources but require further demonstration.
  • Six significant research gaps are identified for better integration and operation.

Abstract

As Power Systems decarbonise, Offshore Wind Power Plants (OWPPs) are increasingly considered as replacements for conventional Blackstart units. This work synthesisesState-of-the-ArtOWPP blackstart capabilities, whose Wind Turbine Generators (WTGs)—upgraded with Grid-Forming (GFM) controls in their Voltage-Source (Power-Electronic) Converters (VSCs)—establish and regulate island voltage and frequency, energise networks, and resynchronise. Traditional Restoration guidelines centre on Synchronous Generators, yet emerging codes expect converter-interfaced resources to assume these roles. Electromagnetic Transient (EMT) studies and pilot tests demonstrate that a limited number of GFM WTGs can energise AC cables, transformers, and High-Voltage DC (HVDC) terminals when sequencing, protection, and control are co-designed. From the modelling point of view, this literature-based work pinpoints six research gaps: (1) re-energisation sequencing of the dead system; (2) WTG/OWPP model fidelity and data confidence; (3) low-fault-current and protection coordination; (4) GFM controls suitable for blackstart operations; (5) multi-converter operation across mixed GFM/GFL WTG units plus HVDC/Battery Energy Storage Systems (BESS); and (6) resynchronisation with load pickup and transition to normal operation. The analysis concludes that GFM-controlled OWPPs remain promising yet under-demonstrated, and consolidates fragmented results into guidance and a set of focused, actionable guidelines to help certify OWPPs as reliable blackstart resources.

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Cite This Study

Noris et al. (2026) studied this question.

synapsesocial.com/papers/69aa6ee2531e4c4a9ff5912fhttps://doi.org/10.1049/icp.2025.4337
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