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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Reducing Position Errors by Vibration Optimization of Stepper Motor Drive Waveforms
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Reducing Position Errors by Vibration Optimization of Stepper Motor Drive Waveforms

机译:通过振动优化步进电机驱动波形来减少位置误差

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摘要

Open-loop control of stepper motors reduces system cost and complexity for positioning systems. To produce a precise current waveform, a novel open-loop control implementation of a hysteresis current controller is presented and compared to the existing pulse-width modulation method. The new method extends the resolution available for a given sampling rate, allowing finer control of the motor current. Applications for precision positioning minimize external disturbances but a real, nonideal, motor introduces vibration, and nonuniform motion. Microstepping of the drive waveform approximates a continuous motion to reduce these effects but they are not fully modeled or understood. The proposed current controller is assembled with a hybrid stepper motor to verify the method experimentally. A differential evolution optimizer is applied with the complete physical system in the loop. To measure vibration, a low cost contact microphone is used, eliminating the requirement for expensive rotational sensors. This method is shown to reduce vibration across different speeds. Comparing the microstep positions of a standard sinusoidal waveform and the waveform optimized to reduce vibration, an improvement in position accuracy is also found.
机译:步进电机的开环控制可降低定位系统的系统成本和复杂性。为了产生精确的电流波形,呈现滞后电流控制器的新颖开环控制实现,并与现有的脉冲宽度调制方法进行比较。新方法扩展了可用于给定采样率的分辨率,允许更精细地控制电机电流。精密定位的应用最大限度地减少了外部干扰,而是真实,非显验,电机引入振动和非均匀运动。驱动波形的微步近似于连续运动,以减少这些效果,但它们没有完全建模或理解。所提出的电流控制器用混合步进电机组装,以实验验证该方法。使用循环中的完整物理系统应用差分演进优化器。为了测量振动,使用低成本的接触麦克风,消除了昂贵的旋转传感器的要求。显示该方法以减少不同速度的振动。比较标准正弦波形的微步位和优化以减少振动的波形,也发现了位置准确性的提高。

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