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A review of system topologies, key operation and control technologies for offshore wind power transmission based on HVDC

Junpeng Deng, Fan Cheng, Liangzhong Yao, Jian Xu, Beilin Mao, Xianyu Li, Rusi Chen

2023IET Generation Transmission & Distribution27 citationsDOIOpen Access PDF

Abstract

Abstract Offshore wind farm (OWF) is considered as a perfect zero‐carbon energy source for the future power system. However, the growing offshore distance and water depth of OWF make the OWF HVDC transmission technique a more promising solution than HVAC due to higher cost‐efficiency and reliability. In this paper, the current situation of OWF‐HVDC projects is introduced at first. Then, novel converter topologies with the higher power density and cost‐efficiency are presented, including the hybrid modular multilevel converter (MMC), alternative arm converter (AAC), and diode rectifier (DR). Next, several OWF HVDC transmission system topologies are introduced, including terminal‐hybrid, station‐hybrid and all‐DC delivered system. Furthermore, the key technologies for OWF HVDC operation and control are summarized, including grid‐forming control strategy for offshore wind turbines, stability analysis method, corresponding stability enhancement measures and frequency support control strategies. Additionally, the fault ride‐through and protection strategies for different fault locations have been presented. Finally, the main conclusions and prospects for OWF HVDC are summarized.

Topics & Concepts

Offshore wind powerWind powerFault (geology)Network topologyRectifier (neural networks)Transmission systemComputer scienceElectric power systemHigh-voltage direct currentHVDC converter stationRenewable energyConvertersTransmission (telecommunications)Modular designEngineeringElectrical engineeringPower (physics)VoltageDirect currentStochastic neural networkGeologyQuantum mechanicsArtificial neural networkOperating systemSeismologyRecurrent neural networkMachine learningPhysicsHVDC Systems and Fault ProtectionSuperconductivity in MgB2 and Alloys
A review of system topologies, key operation and control technologies for offshore wind power transmission based on HVDC | Litcius