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- W4361253092 abstract "Doubly-fed wind turbines using integrated inertia control to participate in grid frequency regulation is essentially a fast power response with a certain delay, the delay characteristics affect the actual frequency response power of wind turbines, so that they do not achieve the expected frequency regulation effect. To this end, this paper analyses the mechanism of the impact of delay on grid frequency dynamics and proposes a correction method for the wind power frequency regulation sag control coefficient. Firstly, a mechanism model considering the delay characteristics of wind power frequency regulation is established; then, the key indicators of the system frequency are obtained by analytical solution; furthermore, the influence mechanism of the delay characteristics on the frequency dynamics of the grid is analysed, and the conclusion that the maximum frequency change rate and steady-state frequency deviation of the system are independent of the delay size, while the lowest point of the system frequency decreases with the increase of the delay is obtained; on this basis, the lowest point of the system frequency is used as an indicator to On this basis, the sag control coefficient is modified to make the system frequency minimum point achieve the desired effect. Finally, the simulation verifies the correctness of the proposed method." @default.
- W4361253092 created "2023-03-31" @default.
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- W4361253092 date "2023-02-24" @default.
- W4361253092 modified "2023-10-18" @default.
- W4361253092 title "Coefficient correction model for wind power considering its delay feature and during its participation in frequency regulation" @default.
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- W4361253092 doi "https://doi.org/10.1109/itnec56291.2023.10082573" @default.
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