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The Effects of Nonlinearities on the Robustness of Various Controllers: Application on a DC Motor

机译:非线性对各种控制器鲁棒性的影响:在直流电动机上的应用

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Real life systems are mostly nonlinear. Controlling nonlinear systems is accomplished in several ways, mostly linearizing the system which may cause problems regarding the robustness of the controller. The controllers, on the other hand may be linear or nonlinear. This paper investigates the effects of nonlinearities on the robustness of various controllers (linear controllers, such as PID with first order derivative filter, state-feedback with integral control and, CRONE, and nonlinear controllers, such as smoothed first-order integral SMC) with an application on a DC motor. The motor's model includes four types on nonlinearities (voltage saturation, current saturation, dead zone, and backlash deadband). The performance of the different controllers is presented and compared using the nonlinear model, the linearized model, uncertainty in the model, and harmonic load disturbance.
机译:现实生活系统主要是非线性的。通过多种方式完成控制非线性系统,主要是线性化系统,该系统可能导致控制器的鲁棒性问题。另一方面,控制器可以是线性的或非线性的。本文调查了非线性对各种控制器的鲁棒性的影响(线性控制器,如PID,具有一阶导数滤波器,具有整体控制和克隆和非线性控制器的状态反馈,如平滑的一阶积分SMC)在直流电动机上的应用。电机模型包括非线性的四种类型(电压饱和,电流饱和,死区和反弹死区)。使用非线性模型,线性化模型,模型中的不确定性以及谐波负荷干扰来呈现和比较不同控制器的性能。

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