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Analysis and Application of the Direct Flux Control Sensorless Technique to Low-Power PMSMs

机译:直流控制无传感器技术对低功耗PMSMS的分析与应用

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摘要

In the field of sensorless control of permanent magnet synchronous motors (PMSMs), different techniques based on machine anisotropies have been studied and implemented successfully. Nevertheless, most proposed approaches extract the rotor position information from the measured machine currents, that, when applied to low-power machines, might require high-bandwidth current sensors. An interesting alternative is given by sensorless techniques that exploit the star-point voltage of PMSMs, such as the direct flux control technique. This work aims at analyzing the conditions of applicability of such technique by considering a more thorough description of the machine inductance matrix. After a comprehensive mathematical description of the technique and characterization of the machine anisotropy information that is extracted from the star-point voltage, simulation as well as experimental results conducted on a test machine are presented and discussed in order to validate the proposed theory.
机译:在永磁同步电动机(PMSMS)的无传感器控制领域中,研究并成功地研究了基于机器各向异性的不同技术。然而,大多数提出的方法从测量的机器电流提取转子位置信息,即在应用于低功率机时,可能需要高带宽电流传感器。一种有趣的替代方案是通过无传感器技术给出的,用于利用PMSM的星点电压,例如直接通量控制技术。这项工作旨在通过考虑更全面的机器电感矩阵的描述来分析这种技术的适用性。在从星点电压提取的技术和表征机器各向异性信息的技术和表征之后,提出并讨论了在测试机器上进行的模拟以及在测试机器上进行的实验结果以验证提出的理论。

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