@inproceedings{f8a3ffbedc6a4dbdb3691fc03ab27809,
title = "Adaptive Over-Frequency Response Control for Wind Farm to Participate the System Frequency Regulation",
abstract = "This paper presents an adaptive over-frequency response control scheme for the large-scale wind farm, which enables wind farm to participate the grid frequency regulation. The main advantage of this scheme is that, by adjusting the over-frequency control gain of each wind generator according to its local wind speed, this scheme takes into account the wind speed difference among wind generators. Specifically, the over-frequency control gain of each wind generator is linear with its local wind speed. As a result, not only the wind farm frequency regulation performance is improved, but also the wind generator stability is ensured. Simulation results on the data collected from a real wind farm validate the effects of the proposed control scheme.",
keywords = "Control Gain, Over-frequency, Over-frequency response, Wind generator",
author = "Kang Wang and Tianhu Wan and Hua Li and Kun Huang and Peng Kou",
note = "Publisher Copyright: {\textcopyright} 2021, Beijing Oriental Sun Cult. Comm. CO Ltd.; 9th Frontier Academic Forum of Electrical Engineering, FAFEE 2020 ; Conference date: 25-08-2020 Through 28-08-2020",
year = "2021",
doi = "10.1007/978-981-33-6606-0\_36",
language = "英语",
isbn = "9789813366053",
series = "Lecture Notes in Electrical Engineering",
publisher = "Springer Science and Business Media Deutschland GmbH",
pages = "381--390",
editor = "Weiming Ma and Mingzhe Rong and Fei Yang and Wenfeng Liu and Shuhong Wang and Gengfeng Li",
booktitle = "The Proceedings of the 9th Frontier Academic Forum of Electrical Engineering",
}