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A second-order auto disturbance rejection controller for matrix converter fed induction motor drive

机译:用于矩阵变换器馈电式异步电动机驱动的二阶自动抗扰控制器

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Matrix converter (MC) is superior to drive induction motor since it has more attractive advantages than conventional pulse width modulation (PWM) inverter like the absence of large dc-link capacitor, unity input power factor and bi-directional power flow. However, due to the direct conversion characteristic of MC, the drive performance of induction motor is easy to be influenced by input voltage disturbances of the MC, and the stability of induction motor drive system fed by MC would be affected by load sudden change as well. A 2nd order nonlinear robust auto disturbance rejection controller (ADRC) is applied to the MC fed induction motor drive system, taking the place of proportional-integral (PI) regulator. In the drive system, the effects of external disturbance (input voltage disturbance and sudden change of load torque) and model internal disturbance are estimated and compensated by ADRC. Using this controller, the anti-disturbance capability of the drive system under abnormal input voltage conditions can be enhanced. In addition, the dynamic drive performances of induction motor are also improved, such as fast responses of speed change and load torque change. Simulation results verify the effectiveness of the proposed controller.
机译:矩阵转换器(MC)优于驱动感应电机,因为它比传统的脉冲宽度调制(PWM)逆变器具有更多吸引人的优势,例如不存在大型直流链路电容器,统一的输入功率因数和双向功率流。然而,由于MC的直接转换特性,感应电动机的驱动性能容易受到MC输入电压干扰的影响,并且由MC供电的感应电动机驱动系统的稳定性也会受到负载突变的影响。 。将二阶非线性鲁棒自动干扰抑制控制器(ADRC)应用于比例系数积分(PI)调节器的MC馈电式感应电动机驱动系统。在驱动系统中,外部干扰(输入电压干扰和负载转矩的突然变化)和模型内部干扰的影响由ADRC估算和补偿。使用该控制器,可以增强驱动系统在异常输入电压条件下的抗干扰能力。另外,还改善了感应电动机的动态驱动性能,例如速度变化和负载转矩变化的快速响应。仿真结果验证了所提出控制器的有效性。

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