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Offshore Horizons: HVDC Wind Farms-Exploring Techno-Economic Dimensions

  • Deepi Singh
  • , Dana Golden
  • , Gaurav Bhansali
  • , Ali Anwar
  • , Shreepooja Singh
  • , Fang Luo
  • , Yiyi Zhou
  • Stony Brook University

Research output: Contribution to journalReview articlepeer-review

7 Scopus citations

Abstract

High Voltage Direct Current (HVDC) technology is a cornerstone of efficient Offshore Wind Farm (OWF) power transmission. This review examines the integration of HVDC technology in OWFs, considering collection and transmission aspects. The analysis is structured around four key dimensions: economic considerations, connection topologies, converter designs, and technical modeling. It begins with an in-depth economic analysis, evaluating cost-effectiveness, reliability, and market dynamics, focusing on investment, operational costs, and lifecycle expenses. Building on this foundation, the review explores various collection and transmission architectures, highlighting their technical and economical trade-offs, and evaluates power converter designs for efficiency, reliability, and offshore adaptability. Finally, advanced modeling and simulation techniques are reviewed to optimize system performance, enhance reliability, and balance computational efficiency. Throughout each of the four sections, economic and technical constraints are considered together. This helps to improve understanding of how systems can be designed in a way that meets the constraints of both fields and to enhance the feasibility on both dimensions. These insights provide a holistic framework for sustainable and economically viable Offshore Wind Energy (OWE) integration, offering practical guidance for developers and grid operators involved in the planning, deployment, and operation of HVDC-enabled offshore wind systems.

Original languageEnglish
Pages (from-to)94910-94943
Number of pages34
JournalIEEE Access
Volume13
DOIs
StatePublished - 2025

Keywords

  • HVDC
  • Offshore wind energy
  • collection and transmission architectures
  • economic consideration
  • power converter design
  • technical modeling

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