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Improved Angular Displacement Estimation Based on Hall-Effect Sensors for Driving a Brushless Permanent-Magnet Motor

机译:基于霍尔效应传感器的改进角位移估计,用于驱动无刷永磁电动机

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We propose an improved method for angular displacement estimation based on Hall-effect sensors for driving a brushless permanent-magnet (PM) motor. The control current with an angle that leads the back electromotive force is then determined to extend the speed range of the motor. Traditionally, Hall-effect signals are measured by both the capture interrupt and periodic timer interrupt functions before the angular displacement is precisely estimated with a digital signal processor. Unfortunately, the capture interrupt function is highly sensitive to external noise. The proposed method retains the periodic timer interrupt function and simplifies the estimation operation, so that the controller is robust to external disturbances. We used the improved method to adjust the phase lead angle for driving both a surface-mounted-PM motor and an interior-PM synchronous motor. Experimental results show that the improved angular displacement estimation effectively rejects noise and is 2.9 times faster than the traditional approach.
机译:我们提出了一种改进的基于霍尔效应传感器的角位移估计方法,用于驱动无刷永磁(PM)电机。然后确定具有导致反电动势的角度的控制电流,以扩展电动机的速度范围。传统上,在使用数字信号处理器精确估算角位移之前,会先通过捕获中断和周期性定时器中断功能来测量霍尔效应信号。不幸的是,捕获中断功能对外部噪声非常敏感。所提出的方法保留了周期性的定时器中断功能并简化了估计操作,因此控制器对外部干扰具有鲁棒性。我们使用改进的方法来调整相位超前角,以同时驱动表面安装式PM电动机和内部PM同步电动机。实验结果表明,改进的角位移估计可以有效地抑制噪声,并且比传统方法快2.9倍。

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