SSCI Mitigation of Series-compensated DFIG Wind Power Plants with Robust Sliding Mode Controller using Feedback Linearization


Vol. 19, No. 2, pp. 569-579, Mar. 2019
10.6113/JPE.2019.19.2.569


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 Abstract

A robust controller is designed based on feedback linearization and sliding mode control to damp sub-synchronous control interaction (SSCI) in doubly fed induction generator (DFIG) wind power plants (WPPs) interfaced with the grid. A feedback-linearized sliding mode controller (FLSMC) is developed for the rotor-side converter (RSC) through feedback linearization, design of the sliding mode controller, and parameter tuning with the use of particle swarm optimization. A series-compensated 100-MW DFIG WPP is adopted in simulation to evaluate the effectiveness of the designed FLSMC at different compensation degrees and wind speeds. The performance of the designed controller in damping SSCI is compared with proportional-integral controller and conventional sub-synchronous resonance damping controller. Besides the better damping capability, the proposed FLSMC enhances robustness of the system under parameter variations.


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Cite this article

[IEEE Style]

P. Li, L. Xiong, J. Wang, M. Ma and M. W. Khan, "SSCI Mitigation of Series-compensated DFIG Wind Power Plants with Robust Sliding Mode Controller using Feedback Linearization," Journal of Power Electronics, vol. 19, no. 2, pp. 569-579, 2019. DOI: 10.6113/JPE.2019.19.2.569.

[ACM Style]

Penghan Li, Linyun Xiong, Jie Wang, Meiling Ma, and Muhammad Waseem Khan. 2019. SSCI Mitigation of Series-compensated DFIG Wind Power Plants with Robust Sliding Mode Controller using Feedback Linearization. Journal of Power Electronics, 19, 2, (2019), 569-579. DOI: 10.6113/JPE.2019.19.2.569.