Commissioning of the World's First Full-Scale MW-Class Superconducting Generator on a Direct Drive Wind Turbine

涡轮机 风力发电 发电机(电路理论) 电气工程 转子(电动) 超导电机 感应发电机 汽车工程 发电 工程类 发电机 机械工程 功率(物理) 电磁线圈 超导磁储能 超导磁体 物理 量子力学
作者
Xiaowei Song,Carsten Bührer,Anders Molgaard,Rasmus S. Andersen,Patrick Brutsaert,Markus Bauer,Jesper Hansen,Anders V. Rebsdorf,J. Kellers,Tiemo Winkler,Anne Bergen,M. Dhallé,S. Wessel,Marcel ter Brake,J. Wiezoreck,Hans Kyling,Hermann Boy,Eric Seitz
出处
期刊:IEEE Transactions on Energy Conversion [Institute of Electrical and Electronics Engineers]
卷期号:35 (3): 1697-1704 被引量:34
标识
DOI:10.1109/tec.2020.2982897
摘要

High temperature superconducting (HTS) generators could enable a lightweight and cost-effective direct drive (DD) wind turbines with large power ratings. The EU-funded EcoSwing project successfully demonstrated the world's first full-scale MW-class HTS generator on a commercial DD wind turbine. This paper focuses on the commissioning of the EcoSwing HTS generator on the wind turbine. The commissioning campaigns, including the rotor cool-down, excitation of the HTS field winding, and the power production of the generator, are presented in the paper. In the testing period, the generator was grid-connected for more than 650 hours and accumulatively produced more than 600 MWh to the grid. The target output power of the 3 MW class was reached. Throughout the real-life testing on the wind turbine, the generator performed well from the electromagnetic, thermal, and mechanical perspectives. Moreover, the generator even sustained three sudden short circuits in the converter system. The work reported has shown that HTS generators are technologically feasible for wind turbine applications, and the technology readiness level of HTS wind turbine generators has been improved to 6~7 for the first time.
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