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Comparison of SPMSM Rotor Speed Estimation Techniques Based on the Flux Linkage Evaluation

机译:基于磁通连杆评价的SPMSM转子速度估计技术比较

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This paper presents results of rotor speed and position estimation accuracy research for the surface permanent magnet synchronous motor (SPMSM) by sensorless FOC vector control. Various options for estimation these quantities are considered using the calculation of flux linkages in the stator reference frame based on measured phase voltages and stator currents. It is shown that variants based on the initial calculation of the angular position using the arctangent function require the conversion of a discontinuous periodic signal into a continuous one. However, even the converted signal has sharp increases of estimation error at the connection points of the discontinuous sections. This leads to even greater errors in estimating the speed when differentiating the position estimation obtained in this way. Among the options based on the initial speed calculation with its further integration for estimating the rotor angular position, methods with and without using explicit differentiation are analyzed. It is shown that minimal errors in coordinate estimation are provided by the method with differentiation of the permanent magnets flux vector components in the stationary stator frame.
机译:本文呈现的转子的速度和位置的估计精度的研究结果由传感器FOC矢量控制表面永磁同步电动机(SPMSM)。用于估计各种选项这些量使用基于测量的相电压和定子电流在定子坐标系磁链的计算中考虑。结果表明,基于使用反正切函数的角度位置的初始计算的变体需要不连续的周期信号转换成连续的一个。然而,即使是转换后的信号具有在不连续部分的连接点推定误差的急剧增加。这将导致更大的错误,在区分以这种方式获得的位置估计时估计的速度。其中基于与其用于估计转子角位置进一步整合的初始速度计算的选项,有和没有使用明确的分化方法进行了分析。结果表明,在坐标估计最小误差是由该方法在固定的定子帧中的永久磁铁的磁通矢量分量的分化提供。

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