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A FOSMC-DPC Control Strategy for Power Quality Enhancement of DFIG Wind Turbine by Using Three-Level Inverter

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Digital Technologies and Applications (ICDTA 2022)

Abstract

This paper proposes a control system for a DFIG power converter, applied by a Three-level NPC back-to-back converter, to maintain a unitary power factor injection to the network that to maximize wind power harvesting using a maximum power point tracking method (MPPT). The use of the FOSMC provides good robustness to the system while the insertion of the Three-level NPC inverter greatly reduces the total harmonic distortion (THD) of the currents injected to the power grid.

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References

  1. Bossoufi, B., et al.: Rooted tree optimization for the backstepping power control of a doubly fed induction generator wind turbine: dSPACE implementation. IEEE Access 9, 26512ā€“26522 (2021)

    ArticleĀ  Google ScholarĀ 

  2. Luo, J., Zhao, H., Gao, S., Han, M.: A low voltage ride through strategy of DFIG based on explicit model predictive control. Int. J. Electr. Power Energy Syst. 119, 105783 (2020)

    ArticleĀ  Google ScholarĀ 

  3. Yessef, M., Bossoufi, B., Taoussi, M., Lagrioui, A., El Mahfoud, M.: Evaluation of adaptive backstepping control applied to DFIG wind system used on the real wind profile of the Dakhla-Morocco city. In: Bennani, S., Lakhrissi, Y., Khaissidi, G., Mansouri, A., Khamlichi, Y. (eds.) WITS 2020. LNEE, vol. 745, pp. 661ā€“671. Springer, Singapore (2022). https://doi.org/10.1007/978-981-33-6893-4_61

    ChapterĀ  Google ScholarĀ 

  4. Beniss, M.A., El Moussaoui, H., Lamhamdi, T., El Markhi, H.: Improvement of power quality injected into the grid by using a FOSMC-DPC for doubly fed induction generator. Int. J. Intell. Eng. Syst. 14(2), 556ā€“567 (2021)

    Google ScholarĀ 

  5. Taoussi, M., Karim, M., Bossoufi, B., et al.: Low-speed sensorless control for wind turbine system. WSEAS Trans. Syst. Control 12, 405ā€“417 (2017)

    Google ScholarĀ 

  6. Yessef, M., Bossoufi, B., Taoussi, M., Lagrioui, A., Chojaa, H.: Improved hybrid control strategy of the doubly-fed induction generator under a real wind profile. In: Motahhir, S., Bossoufi, B. (eds.) ICDTA 2021. LNNS, vol. 211, pp. 1279ā€“1290. Springer, Cham (2021). https://doi.org/10.1007/978-3-030-73882-2_117

    ChapterĀ  Google ScholarĀ 

  7. Amrane, F., Francois, B., Chaiba, A.: Experimental investigation of efficient and simple wind-turbine based on DFIG-direct power control using LCL-filter for stand-alone mode.Ā ISA Trans. (2021)

    Google ScholarĀ 

  8. Beniss, M.A., El Moussaoui, H., Lamhamdi, T., El Markhi, H.: Performance analysis and enhancement of Direct power control Of DFIG based wind system. Int. J. Pow. Electron. Drive Syst. 12(2), 1034ā€“1044 (2021)

    Google ScholarĀ 

  9. Xiong, L., Li, P., Wang, J.: High-order sliding mode control of DFIG under unbalanced grid voltage conditions. Int. J. Electr. Power Energy Syst. 117, 105608 (2020)

    ArticleĀ  Google ScholarĀ 

  10. El Ouanjli, N., Motahhir, S., Derouich, A., El Ghzizal, A., Chebabhi, A., Taoussi, M.: Improved DTC strategy of doubly fed induction motor using fuzzy logic controller. Energy Rep. 5, 271ā€“279 (2019)

    ArticleĀ  Google ScholarĀ 

  11. Van, T.L., Lee, D.: Developing function models of back-to-back PWM converters for simplified simulation. J. Power Electron. 11, 51ā€“58 (2011)

    ArticleĀ  Google ScholarĀ 

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Correspondence to Mohamed Amine Beniss .

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Beniss, M.A., Moussaoui, H.E., Chekira, O., Lamhamdi, T., EL Markhi, H., Boharb, A. (2022). A FOSMC-DPC Control Strategy for Power Quality Enhancement of DFIG Wind Turbine by Using Three-Level Inverter. In: Motahhir, S., Bossoufi, B. (eds) Digital Technologies and Applications. ICDTA 2022. Lecture Notes in Networks and Systems, vol 454. Springer, Cham. https://doi.org/10.1007/978-3-031-01942-5_71

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