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A Sliding Mode-Based Approach to Enhance Power Quality in Grid Connected wind Turbines.

, and . ACC, page 6132-6137. IEEE, (2018)

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An Integral Terminal Sliding Mode-Based Approach to Control the Super Heat Temperature of a HVAC System., , and . ACC, page 5713-5718. IEEE, (2019)A Sliding Mode-Based Approach to Enhance Power Quality in Grid Connected wind Turbines., and . ACC, page 6132-6137. IEEE, (2018)A sliding mode approach to enhance the power quality of wind turbines under unbalanced voltage conditions., and . IEEE CAA J. Autom. Sinica, 6 (2): 566-574 (2019)A Terminal Sliding Mode Approach for the Rotor Side Converter of a DFIG-Based Wind Energy System., and . CCTA, page 1736-1740. IEEE, (2018)A Sliding Mode Disturbance Observer-Based Approach for Grid Connected Wind Energy Systems., , and . ACC, page 5719-5724. IEEE, (2019)A Nonlinear Control Design to Improve the Dynamic Stability of a Multi-Machine Power System with DFIG-Based Wind Turbines., and . ACC, page 6731-6736. IEEE, (2018)Integral terminal Sliding Mode Control for maximum power production in grid connected PV systems., , and . CCA, page 1560-1565. IEEE, (2016)A comparison study between two sliding mode based controls for voltage sag mitigation in grid connected wind turbines., and . CCA, page 1913-1918. IEEE, (2015)A new coordinately design of STATCOM and power system stabilizer using hybrid BF-NM algorithm., , and . CCECE, page 687-690. IEEE, (2011)A Probabilistic Economic Load Dispatch Approach for Power Systems with Wind, Photovoltaic and Heat and Power Units., , , and . ICIT, page 577-582. IEEE, (2019)