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Sensor-based and Sensorless Vector Control of PM Synchronous Motor Drives: A Comparative Study

机译:永磁同步电动机驱动器的基于传感器和无传感器矢量控制的比较研究

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Speed and rotor position estimation is mandatory for vector control scheme of Permanent Magnet Synchronous Motor (PMSM). The estimation accuracy of Non-adaptive (Open loop) methods degrades as mechanical speed reduces. At lower speed, discrepancy in resistance and estimated stator flux values leads to significant impact on the steady state and transient performance of the drive system. The system becomes more robust against parameter mismatch and signal noises by employing adaptive observers for estimation of speed and flux. In this paper, a comprehensive analysis of sensor-based and sensorless based on sliding mode observer (SMO) techniques for vector control of PMSM is presented with regards to the steady- state and dynamic performance robustness against parameter sensitivity, stability and computational complexity. The synopsis of pros and cons of both observers are also discussed.
机译:速度和转子位置估算对于永磁同步电动机(PMSM)的矢量控制方案是必不可少的。随着机械速度的降低,非自适应(开环)方法的估计精度会降低。在较低速度下,电阻和定子磁链估计值的差异会严重影响驱动系统的稳态和瞬态性能。通过采用自适应观测器来估计速度和通量,该系统对参数失配和信号噪声变得更加健壮。本文针对参数灵敏度,稳定性和计算复杂性,针对稳态和动态性能鲁棒性,针对基于PMSM的矢量控制的基于滑模观测器(SMO)的基于传感器和无传感器的技术进行了全面分析。还讨论了两个观察者的利弊提要。

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