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Improving dynamics of vector controlled IM drive by resampling SVM under low frequency ratio

机译:通过在低频比下对SVM重新采样来改善矢量控制IM驱动器的动力学

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Field Oriented Control (FOC) technique is one of the most frequently applied algorithm to control the torque and the speed of a three-phase electric drive. The paper focuses on high speed or high-pole count motor FOC drives when both the sampling over reference frequency ratio F and the carrier over reference frequency m is low. The paper presents that the stability range of a speed sensor-less FOC motor drive can be extended by recalculating the reference signal of the Space Vector Modulation algorithm at the negative peak of the carrier signal as well by approximating the rotor flux angle change over one half carrier period. The result was verified by computer simulations and laboratory measurements.
机译:磁场定向控制(FOC)技术是控制三相电驱动器的转矩和速度的最常用算法之一。本文着重介绍当参考频率比率F上的采样和参考频率m上的载波都较低时的高速或高极数电动机FOC驱动器。本文提出,可以通过在载波信号的负峰值处重新计算空间矢量调制算法的参考信号,以及通过近似一半的转子磁通角变化,来扩展无速度传感器FOC电动机驱动器的稳定性范围。运营期。通过计算机模拟和实验室测量验证了结果。

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