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Exponential Stabilization of Switched-Reluctance Motors Via Speed-Sensorless Feedback

机译:无速度传感器反馈的开关磁阻电机指数稳定

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We solve the control problem of switched-reluctance motors without velocity measurements. Our controller is composed of a loop in the mechanical dynamics which consists of a ${rm PI}^{2}{rm D}$ controller and a tracking controller closing an inner loop with the stator currents dynamics. The ${rm PI}^{2}{rm D}$ controller consists of a linear proportional derivative controller in which the measurement of velocities is replaced by approximate derivatives of angular position. Then a double integrator is added, composed of an integral of the angular position errors and a second integral correction term in function of the approximate derivative. We show global exponential stability and illustrate the performance of our controller in numerical simulations.
机译:我们解决了无速度测量的开关磁阻电机的控制问题。我们的控制器由机械动力学中的一个回路组成,该回路由一个$ {rm PI} ^ {2} {rm D} $控制器和一个跟踪控制器组成,该跟踪控制器通过定子电流动力学来闭合内部回路。 $ {rm PI} ^ {2} {rm D} $控制器由一个线性比例微分控制器组成,其中速度的测量值由角位置的近似导数代替。然后添加一个双积分器,该双积分器由角位置误差的积分和根据近似导数的第二积分校正项组成。我们展示了全局指数稳定性,并在数值模拟中说明了控制器的性能。

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