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Ahead of Print article · Journal article · Preprint article

Variable-Speed Wind Turbine Control Designed for Coordinated Fast Frequency Reserves

From

KTH Royal Institute of Technology1

Department of Electrical Engineering, Technical University of Denmark2

Center for Electric Power and Energy, Centers, Technical University of Denmark3

Energy System Management, Center for Electric Power and Energy, Centers, Technical University of Denmark4

Modern power systems present low levels of inertia due to the growing shares of converter-interfaced generation. Consequently, renewable energy sources are increasingly requested to provide frequency support. In addition, due to the inertia loss, the requirements regarding frequency containment reserves (FCR) are becoming tough to meet with traditional units such as hydro, whose non-minimum phase (NMP) characteristic reduces the closed-loop stability margins.

The shortcomings of traditional synchronous generation motivates new protocols for fast frequency reserves (FFR). In this work, we design a wind turbine (WT) model useful for FFR. It is shown that the dynamical shortcomings of the WT, in providing steady-power or slow FCR support, are suitably described by a first-order transfer function with a slow NMP zero.

The WT model is tested in a 5-machine representation of the Nordic synchronous grid. It is shown that the NMP model is useful for designing a controller that coordinates FFR from wind with slow FCR from hydro turbines. By simulating the disconnection of a 1400 MW importing dc link in a detailed nonlinear model, it is shown that the wind--hydro combination not only satisfies the latest regulations, but also presents a smooth response avoiding overshoot and secondary frequency dips during frequency recovery.

Language: English
Publisher: IEEE
Year: 2022
Pages: 1471-1481
ISSN: 15580679 and 08858950
Types: Ahead of Print article , Journal article and Preprint article
DOI: 10.1109/TPWRS.2021.3104905
ORCIDs: 0000-0003-0656-7991 , Pombo, Daniel Vázquez and 0000-0001-9940-5929

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