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Research Articles

High-order sliding-mode control using integral terminal sliding manifold for a wind turbine under grid faults

ORCID Icon, , ORCID Icon, &
Pages 635-650 | Received 28 Apr 2022, Accepted 19 Dec 2022, Published online: 03 Jan 2023

References

  • Akbar, R., & Uchiyama, N. (2018). Design and experiment of adaptive modified super-twisting control with a nonlinear sliding surface for a quadrotor helicopter. Advances in Mechanical Engineering, 10(10). https://doi.org/10.1177/1687814018804934
  • Chiu, C.-S. (2012). Derivative and integral terminal sliding mode control for a class of MIMO nonlinear systems. Automatica, 48(2), 316–326. https://doi.org/10.1016/j.automatica.2011.08.055
  • Derafa, L., Benallegue, A., & Fridman, L. (2012). Super twisting control algorithm for the attitude tracking of a four rotors UAV. Journal of the Franklin Institute, 349(2), 685–699. https://doi.org/10.1016/j.jfranklin.2011.10.011
  • El Houm, Y., Abbou, A., Labbadi, M., & Cherkaoui, M. (2020). Optimal new sliding mode controller combined with modified supertwisting algorithm for a perturbed quadrotor UAV. International Journal of Aerospace Engineering, 2020, Article ID 9753870. https://doi.org/10.1155/2020/9753870
  • Elyaalaoui, K., Ouassaid, M., & Cherkaoui, M. (2014). Non-linear control and transient stability of SCAG connected to unbalanced AC network. In 2014 International on Renewable and Sustainable Energy Conference (IRSEC). IEEE.
  • Elyaalaoui, K., Ouassaid, M., & Cherkaoui, M. (2016). Supervision system of a wind farm based on squirrel cage asynchronous generator. In Fourth International Conference on Renewable and Sustainable Energy (IRSEC'16). IEEE.
  • Elyaalaoui, K., Ouassaid, M., & Cherkaoui, M. (2019). Dispatching and control of active and reactive power for a wind farm considering fault ride-through with a proposed pi reactive power control. Renewable Energy Focus, 28, 56–65. https://doi.org/10.1016/j.ref.2018.11.002
  • Elyaalaoui, K., Ouassaid, M., & Cherkaoui, M. (2020). Improvement of THD performance of a robust controller for grid-side energy conversion system based on LCL filter without RC sensor. International Journal of Electrical Power & Energy Systems, 121, Article 106143. https://doi.org/10.1016/j.ijepes.2020.106143
  • G. W. E. C. (GWEC) (2018). GWEC global wind report_april 2018.
  • Gurumurthy, G., & Das, D. K. (2020). Terminal sliding mode disturbance observer based adaptive super twisting sliding mode controller design for a class of nonlinear systems. European Journal of Control, 57, 232–241. https://doi.org/10.1016/j.ejcon.2020.05.004
  • Hiremath, A., & Moger, T. (2022). Modified super twisting algorithm based sliding mode control for LVRT enhancement of DFIG driven wind system. Energy Reports, 8, 3600–3613. https://doi.org/10.1016/j.egyr.2022.02.235
  • Kelkoul, B., & Boumediene, A. (2020). Stability analysis and study between classical sliding mode control (SMC) and super twisting algorithm (STA) for doubly fed induction generator (DFIG) under wind turbine. Energy, 214, 118871. https://doi.org/10.1016/j.energy.2020.118871
  • Kumar, V., Mohanty, S. R., & Kumar, S. (2020, September). Event trigger super twisting sliding mode control for DC micro grid with matched/unmatched disturbance observer. IEEE Transactions on Smart Grid, 11(5), 3837–3849. https://doi.org/10.1109/TSG.5165411
  • Labbadi, M., Boubaker, S., Djemai, M., Kamel Mekni, S., & Bekrar, A. (2022). Fixed-time fractional-order global sliding mode control for nonholonomic mobile robot systems under external disturbances. Fractal and Fractional, 6(4), 177. https://doi.org/10.3390/fractalfract6040177
  • Labbadi, M., Boukal, Y., & Cherkaoui, M. (2020). Path following control of quadrotor UAV with continuous fractional-order super twisting sliding mode. Journal of Intelligent & Robotic Systems, 100(3–4), 1429–1451. https://doi.org/10.1007/s10846-020-01256-3
  • Labbadi, M., & Cherkaoui, M. (2019a). Robust adaptive nonsingular fast terminal sliding-mode tracking control for an uncertain quadrotor UAV subjected to disturbances. ISA Transactions, 99, 290–304. https://doi.org/10.1016/j.isatra.2019.10.012
  • Labbadi, M., & Cherkaoui, M. (2019b). Robust integral terminal sliding mode control for quadrotor UAV with external disturbances. International Journal of Aerospace Engineering, 2019, Article 2016416, 10 pages. https://doi.org/10.1155/2019/2016416
  • Labbadi, M., & Cherkaoui, M. (2020). Novel robust super twisting integral sliding mode controller for a quadrotor under external disturbances. International Journal of Dynamics and Control, 8, 805–815. https://doi.org/10.1007/s40435-019-00599-6
  • Labbadi, M., Elyaalaoui, K., Bousselamti, L., Ouassaid, M., & Cherkaoui, M. (2022). Description and modeling of wind energy conversion system. In Modeling, optimization and intelligent control techniques in renewable energy systems. Studies in systems, decision and control: Vol. 434. Springer. https://doi.org/10.1007/978-3-030-98737-4
  • Labbadi, M., Elyaalaoui, K., Dabachi, M. A., Lakrit, S., Djemai, M., & Cherkaoui, M. (2022). Robust flight control for a quadrotor under external disturbances based on predefined-time terminal sliding mode manifold. Journal of Vibration and Control. https://doi.org/10.1177/10775463221074098
  • Ma, Y., Li, D., Li, Y., & Yang, L. (2022, February). A novel discrete compound integral terminal sliding mode control with disturbance compensation for PMSM speed system. IEEE/ASME Transactions on Mechatronics, 27(1), 549–560. https://doi.org/10.1109/TMECH.2021.3068192
  • Minh, B. L. N., Huynh, V. V., Nguyen, T. M., & Tsai, Y. W. (2018). Decentralized adaptive double integral sliding mode controller for multi-area power systems. Mathematical Problems in Engineering, 2018, Article ID 2672436. https://doi.org/10.1155/2018/2672436
  • Musarrat, M. N., & Fekih, A. (2020). A fractional order SMC approach to improve the reliability of wind energy systems during grid faults. IFAC-PapersOnLine, 53(2), 12109–12114. https://doi.org/10.1016/j.ifacol.2020.12.770
  • Ouassaid, M., Elyaalaoui, K., & Cherkaoui, M. (2016). Sliding mode control of induction generator wind turbine connected to the grid. In S. Vaidyanathan & C. Volos (Eds.), Advances and applications in nonlinear control systems (pp. 531–553). Springer.
  • Pan, Y., Yang, C., Pan, L., & Yu, H. (2018, July). Integral sliding mode control: Performance, modification, and improvement. IEEE Transactions on Industrial Informatics, 14(7), 3087–3096. https://doi.org/10.1109/TII.2017.2761389
  • Polyakov, A., & Poznyak, A. (2009). Reaching time estimation for “super-twisting” second order sliding mode controller via Lyapunov function designing. IEEE Transactions on Automatic Control, 54(8), 1951–1955. https://doi.org/10.1109/TAC.2009.2023781
  • Qin, Y., Rath, J. J., Hu, C., Sentouh, C., & Wang, R. (2019). Adaptive nonlinear active suspension control based on a robust road classifier with a modified super-twisting algorithm. Nonlinear Dynamics, 97, 2425–2442. https://doi.org/10.1007/s11071-019-05138-8
  • Rahman, A. U., Zehra, S. S., Ahmad, I., & Armghan, H. (2021). Fuzzy supertwisting sliding mode-based energy management and control of hybrid energy storage system in electric vehicle considering fuel economy. Journal of Energy Storage, 37, Article 102468. https://doi.org/10.1016/j.est.2021.102468
  • Sadeghi, R., Madani, S. M., Ataei, M., Agha Kashkooli, M. R., & Ademi, S. (2018). Super-twisting sliding mode direct power control of a brushless doubly fed induction generator. IEEE Transactions on Industrial Electronics, 65(11), 9147–9156. https://doi.org/10.1109/TIE.2018.2818672
  • Sami, I., Ullah, S., Basit, A., Ullah, N., & Ro, J.-S. (2020). Integral super twisting sliding mode based sensorless predictive torque control of induction motor. IEEE Access, 8, 186740–186755. https://doi.org/10.1109/Access.6287639
  • Song, Z., Mei, X., Tao, T., & Xu, M. (2020). The sliding-mode control based on a novel reaching technique for permanent magnet synchronous motors. Electric Power Components and Systems, 48(1-2), 1505–1513. https://doi.org/10.1080/15325008.2019.1663299
  • Wiebe, E., Durán, J. L., & Acosta, P. R. (2011). Integral sliding mode active filter control for harmonic distortion compensation. Electric Power Components and Systems, 39(9), 833–849. https://doi.org/10.1080/15325008.2010.549541
  • Zhang, C., Song, G., Yang, L., & Sun, Z. (2020). Time-domain single-ended fault location method that does not need remote-end system information. IET Generation, Transmission & Distribution, 14(2), 284–293. https://doi.org/10.1049/gtd2.v14.2
  • Zhao, Y., Duan, Z., Wen, G., & Chen, G. (2016). Distributed finite-time tracking of multiple non-identical second-order nonlinear systems with settling time estimation. Automatica, 64, 86–93. https://doi.org/10.1016/j.automatica.2015.11.005

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