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Special Issue Paper

Review of Lightweight Oriented Offshore Wind Power Transmission Schemes

Yanfeng Wang1Shuxin Luo1Mengze Yu1Lingyun Yang2( )Jun Huang2Zhicong Huang2
Guangdong Power Grid Corporation, Guangzhou 510600, China
Shien-Ming Wu School of Intelligent Engineering, South China University of Technology, Guangzhou 510641, China
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Abstract

The use of renewable energy is essential for addressing global climate change, and offshore wind power plays a critical role in achieving this goal. As nearshore resources become saturated, the focus of offshore wind power development is shifting to deep-sea areas. Deep-sea wind power transmission schemes must prioritize lightweight designs and low costs to enhance overall economic and technical feasibility. Currently, four lightweight offshore wind power transmission schemes have been identified: low-frequency alternating current (LFAC) transmission, high-voltage direct current (HVDC) transmission utilizing uncontrolled diode rectifier units (DRU-HVDC), DRU-MMC parallel-connection hybrid rectifier transmission (PCDRU-MMC), and DRU-MMC series-connection hybrid rectifier transmission (SCDRU-MMC). Four schemes are examined, advantages and disadvantages in various scenarios are outlined, technical performance are analyzed. A comprehensive economic assessment of each scheme is conducted for deep-sea environments far from load centers. The results indicate that LFAC transmission effectively reduces transmission losses, whereas DRU-HVDC has limitations in terms of voltage support and black-start capability. In contrast, hybrid rectification solutions such as PCDRU-MMC and SCDRU-MMC combine the economic benefits of DRU-HVDC with the flexibility of modular multilevel converters (MMCs), thereby enhancing system reliability and efficiency.

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Chinese Journal of Electrical Engineering
Pages 16-39

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Cite this article:
Wang Y, Luo S, Yu M, et al. Review of Lightweight Oriented Offshore Wind Power Transmission Schemes. Chinese Journal of Electrical Engineering, 2025, 11(1): 16-39. https://doi.org/10.23919/CJEE.2025.000098

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Received: 13 October 2024
Revised: 13 November 2024
Accepted: 03 December 2024
Published: 31 March 2025
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