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首页> 外文期刊>IEEE Transactions on Control Systems Technology >An Analysis of the Effects of Closed-Loop Commutation Delay on Stepper Motor Control and Application to Parameter Estimation
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An Analysis of the Effects of Closed-Loop Commutation Delay on Stepper Motor Control and Application to Parameter Estimation

机译:闭环换相延迟对步进电机控制的影响分析及其在参数估计中的应用

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摘要

The purpose of this brief is to call attention to a phenomenon that is observed when a closed-loop commutation delay is present in stepper motor control applications especially involving high-speed precision motors, e.g., precision assembly, wafer probing, coordinate measuring machines. Commutation is a popular technique used to feedback linearize the mechanical dynamics of a stepper motor by generating phase currents based on the sine and cosine of the relative position within a toothpitch. In the presence of a time delay in the closed loop, the feedback linearization is not exact and a residual term depending on incremental position remains in the closed-loop dynamics. In this brief, we show that a time delay in the closed loop results in two dynamical phenomena, viz., introduction of multiple solution trajectories with sensitive dependence on initial conditions (possibly yielding steady-state velocities with opposite signs) and saturation of velocity. We also show that these phenomena can be exploited to estimate parameters such as closed-loop delay, sensor offset, and toothpitch of the motor.
机译:本简述的目的是提醒人们注意一种现象,该现象在步进电机控制应用中出现闭环换相延迟时,尤其是在涉及高速精密电机(例如精密装配,晶圆探测,坐标测量机)的应用中。换向是一种流行的技术,用于通过基于牙距内相对位置的正弦和余弦生成相电流来反馈使步进电机的机械动力学线性化。在闭环中存在时间延迟的情况下,反馈线性化并不精确,并且取决于增量位置的残差项保留在闭环动力学中。在本摘要中,我们显示了闭环中的时间延迟会导致两个动力学现象,即引入对初始条件敏感的多解轨迹(可能产生具有相反符号的稳态速度)和速度饱和。我们还表明,可以利用这些现象来估计参数,例如闭环延迟,传感器偏移和电机的齿距。

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