FOC驱动器中使用规则采样和Park变换计算平均d-q电流分量的误差分析

L. Jarzebowicz
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引用次数: 15

摘要

在使用电压源逆变器的电力驱动中,电机电流包含由脉宽调制(PWM)电压引起的纹波分量。波纹的频率范围远高于电流控制的带宽。因此,控制是在基本电流分量的基础上进行的,即平均值,平均时间为PWM周期。在大多数情况下,平均电流的测量没有低通滤波,使用常规采样方法。该方法通过在一个PWM周期内采样一次电流瞬时值,与PWM载波信号的峰值或谷同步提取电流基元分量。规则采样与面向磁场的电机控制算法相结合,在工业中得到了广泛的应用。在这种情况下,电机磁链和转矩由在旋转参考系d-q中表示的电流分量控制。电流控制器的反馈信号是在采样电机相电流的基础上计算的,使用Clarke和Park变换。然而,将平均相电流的样本转换到旋转参考系中并不能得到平均d-和q-电流分量的精确值。这影响电机转矩和磁通。在相对较低的PWM频率下运行的高速驱动器中,误差达到相当大的值。对误差值进行了解析推导,并进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Error analysis of calculating average d-q current components using regular sampling and Park transformation in FOC drives
In electric drives using voltage source inverters, motor currents contain ripple component resulting from pulse-width modulated (PWM) voltage. The frequency range of the ripples is much higher than the bandwidth of current control. Therefore the control is performed on the basis of a fundamental current component, i.e. average value with the averaging time being the PWM period. In majority of cases the average current is measured without low-pass filtering, with the use of Regular Sampling method. The method enables extraction of the current fundamental component by sampling current instantaneous value once in a PWM period, synchronously with peaks or valleys of PWM carrier signal. Regular Sampling is widely used in industry in combination with field-oriented motor control algorithms. In such a case motor flux and torque are controlled by current components expressed in a rotating reference frame d-q. The feedback signals for current controllers are calculated on the basis of sampled motor phase currents, with the use of Clarke and Park transformations. However, transforming samples of average phase currents into the rotating reference frame does not result in exact values of average d- and q- current components. This influences motor torque and flux. The error reaches considerable values in high-speed drives operating at relatively low PWM frequency. The value of the error was derived analytically, followed by simulation verification.
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