反馈路径延迟对受控永磁同步电机稳定性的影响

Amina Shrestha, Rhishav Mahaju, S. Kuruppu
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引用次数: 1

摘要

控制系统中计算算法日益复杂,导致实时执行时计算周期延长。反馈测量信号路径是闭环控制系统中至关重要的信号路径,特别是在需要高带宽控制的情况下。由于处理时间长,电流信号的采样往往被多个脉冲宽度调制(PWM)周期延迟,这取决于中断优先级。研究了电流反馈采样延迟效应对磁场定向控制(FOC)永磁同步电机(PMSM)驱动系统整体稳定性的影响。首先分析了考虑反馈采样延迟的系统传递函数的理论方程,然后给出了仿真结果,最后在实际硬件上进行了实验。分析了增大采样延迟对电流反馈信号的影响,并结合控制器的其他设计参数进行了分析。
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Feedback Path Delay Effect on Stability of Controlled PMSMs
Growing complexity of the computational algorithms in control systems invites prolonged calculation periods when executed in real-time. Feedback measurement signal path is a crucial signal path in closed-loop controlled systems, especially when requiring high bandwidth control. With high processing time, sampling of current signal tends to be delayed by multiple Pulse Width Modulation (PWM) periods depending on the interrupt priorities. This paper studies the effect of current feedback sampling delay effect on the overall stability of field oriented controlled (FOC) Permanent Magnet Synchronous Motor (PMSM) drive system. The delay effect study is done by first analyzing theoretical equation of system transfer function with the feedback sampling delay incorporated, followed by simulation results and finally by performing experiments on actual hardware. The impact of increasing sampling delay on the current feedback signal is presented with other controller design parameters.
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