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Nonlinear adaptive MIMO controller for high performance DC motor field weakening

机译:高性能直流电机场弱化非线性自适应MIMO控制器

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This paper investigates a novel field weakening technique for a separately excited DC motor that exhibits considerable nonlinearities. Using the transformed motor system with uncertainties in both parameters and load torque, a constant power field weakening controller is developed by nonlinear adaptive multi-input multi-output (MIMO) backstepping combined with variable structure control. Due to the decoupling effect, this controller achieves speed tracking at any desired set point of operation. To demonstrate the effectiveness of the proposed controller, the results of computer tests are presented for a specific motor. It has been shown that the controller provides globally robust speed control performance, while the motor system is operated over a wide dynamic regime of field weakening, even under the presence of mismatched parameters and load uncertainties.
机译:本文研究了具有相当大的非线性的单独激发直流电动机的新颖弱化技术。在参数和负载扭矩中使用具有不确定性的变换电机系统,由非线性自适应多输入多输出(MIMO)与可变结构控制结合使用恒定的电源场弱化控制器。由于去耦效果,该控制器在任何所需的设定的操作点处实现速度跟踪。为了证明所提出的控制器的有效性,为特定电机提供了计算机测试的结果。已经表明,该控制器提供全局稳健的速度控制性能,而电机系统也在宽敞动态的弱势状态下运行,即使在存在不匹配的参数和负载不确定性的情况下也是如此。

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