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An improved method of speed damping for a stepper motor with a smooth speed estimation

机译:具有平滑速度估计的步进电机速度衰减的一种改进方法

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This paper presents an improved speed damping algorithm. By revealing the relation of the compensating coefficient to the speed and load torque, an optimal selection of the compensating coefficient is proposed. The vibration of the motor is reduced to a low level and the stability of the motor is guaranteed. In addition, this paper shows the implementation of a torque-based speed estimation in the damping algorithm. The speed is estimated smoothly and the estimation has no phase lag, in contrast with the speed estimation of conventional methods. This smooth estimated speed provides the ability to increase the sample rate of the control algorithm. This proposed damping method is implemented in a Field-programmable gate array (FPGA)-based stepper motor driver system. The experiment is performed at low speed to verify the correctness of the proposed compensating coefficient by demonstrating its effectiveness in suppressing vibration while using the torque-based speed estimation.
机译:本文提出了一种改进的速度阻尼算法。通过揭示补偿系数与速度和负载转矩的关系,提出了补偿系数的最佳选择。电机的振动降低到较低水平,并保证了电机的稳定性。此外,本文还展示了阻尼算法中基于转矩的速度估计的实现。与常规方法的速度估计相比,速度估计平稳且估计没有相位滞后。这种平稳的估计速度提供了增加控制算法的采样率的能力。在基于现场可编程门阵列(FPGA)的步进电机驱动器系统中实现了该提议的阻尼方法。通过在基于转矩的速度估算中证明其在抑制振动方面的有效性,在低速下进行了实验,以验证所提出的补偿系数的正确性。

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