Benbouhenni Habib, Yessef Mourad, Colak Ilhami, Bizon Nicu, Kotb Hossam, AboRas Kareem M, ELrashidi Ali
Department of Electrical & Electronics Engineering, Faculty of Engineering and Architecture, Nisantasi University, Istanbul, 34481742, Turkey.
LIMAS Laboratory, Faculty of Sciences Dhar El Mahraz, SMBA University, 30002, Fez, Morocco.
Sci Rep. 2024 Mar 7;14(1):5664. doi: 10.1038/s41598-024-55271-7.
The paper proposes a nonlinear controller called dual super-twisting sliding mode command (DSTSMC) for controlling and regulating the rotor side converter (RSC) of multi-rotor wind power systems that use doubly-fed induction generators. It was proposed that this controller be developed as an alternative to the direct power control (DPC), which makes use of a pulse width modulation (PWM) strategy to regulate the RSC's functioning. Overcoming the power/current quality issue with the proposed technique (DPC-DSTSMC-PWM) is characterized by great robustness and excellent performance. The designed strategy was contrasted with the standard method of control and other methods already in use. So, the unique proposed control strategy's robustness, performance, efficiency, and efficacy in enhancing system characteristics were tested and validated in Matlab/Simulink. In both tests, the proposed method resulted in significant improvements, reducing active power ripples by 83.33%, 57.14%, and 48.57% in the proposed tests. When compared with the traditional regulation method, the reduction rates of reactive power ripples are 64.06%, 52.47%, and 68.7% in the tests. However, in contrast to the conventional method, the proposed tests showed a decrease of between 72.46%, 50%, and 76.22% in the value of total harmonic distortion (THD) of the provided currents. These ratios show how effective the proposed plan is in ameliorating and enhancing aspects of the energy system.
本文提出了一种名为双超扭曲滑模指令(DSTSMC)的非线性控制器,用于控制和调节采用双馈感应发电机的多转子风力发电系统的转子侧变流器(RSC)。有人提出开发这种控制器作为直接功率控制(DPC)的替代方案,直接功率控制利用脉宽调制(PWM)策略来调节RSC的运行。所提出的技术(DPC-DSTSMC-PWM)克服了功率/电流质量问题,具有很强的鲁棒性和优异的性能。将设计的策略与标准控制方法和其他已使用的方法进行了对比。因此,在Matlab/Simulink中对所提出的独特控制策略在增强系统特性方面的鲁棒性、性能、效率和功效进行了测试和验证。在这两个测试中,所提出的方法都有显著改进,在所提出的测试中,有功功率纹波分别降低了83.33%、57.14%和48.57%。与传统调节方法相比,测试中无功功率纹波的降低率分别为64.06%、52.47%和68.7%。然而,与传统方法相比,所提出的测试表明,所提供电流的总谐波失真(THD)值降低了72.46%、50%和76.22%。这些比率表明了所提出的方案在改善和增强能源系统方面的有效性。