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Improved Rotor Position Estimation for Permanent Magnet Synchronous Machines Based on Hall-Effect Sensors

机译:基于霍尔效应传感器的永磁同步机改进转子位置估计

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In order to replace the traditional high-resolution position sensors in the permanent-magnet synchronous machines (PMSM), the digital Hall-effect sensors are commonly employed to estimate the rotor position and speed. However, the traditional estimated method based on the average speed results in position error due to the six discrete Hall-effect signals in one resolution at low speed, which will degrades its performance. To compensate the estimated rotor position and speed errors, the Hall-based position observer combined with a non-smooth feedback phase-locked loop (NSFP) is introduced in this paper, which can achieve continuous rotor position and speed signals at all speed range. The static and dynamic performance of the estimation algorithm is validated by experiments on one prototype.
机译:为了更换永磁同步机(PMSM)中的传统高分辨率位置传感器,通常采用数字霍尔效应传感器来估计转子位置和速度。然而,基于平均速度的传统估计方法导致位置误差由于六个离散的霍尔效应信号,以一个分辨率为低速,这将降低其性能。为了补偿估计的转子位置和速度误差,本文介绍了基于霍尔的位置观察者与非平滑反馈锁相环(NSFP)一起引入,可以在所有速度范围内实现连续转子位置和速度信号。通过对一个原型的实验验证了估计算法的静态和动态性能。

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