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Stability analysis and suppression control of rotor oscillation for stepping motors by Lyapunov's direct method

机译:用李雅普诺夫直接法对步进电机转子振动进行稳定性分析和抑制控制

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Stepping motors are used as the driver for positioning in control systems. It is well-known that the transient response of a stepping motor is generally oscillatory in the case of open-loop control. The rotor oscillation must be suppressed in quick positioning applications. In this paper, the stability analysis and the suppression control of rotor oscillations of variable reluctance stepping motors are studied by Lyapunov's direct method. Since the motor is a nonlinear system, the method is useful for analyzing the stability of the motor. The suppression control of rotor oscillations is achieved by excitation control of phase windings using the Lyapunov function. The validity of this method is examined by experiments.
机译:步进电机用作控制系统中定位的驱动器。众所周知,在开环控制的情况下,步进电机的瞬态响应通常会产生振荡。在快速定位应用中,必须抑制转子振荡。本文采用李雅普诺夫直接法研究了变磁阻步进电机的稳定性和转子振动的抑制控制。由于电动机是非线性系统,因此该方法可用于分析电动机的稳定性。转子振荡的抑制控制是通过使用Lyapunov函数对相绕组进行励磁控制来实现的。实验验证了该方法的有效性。

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