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Zero Voltage Vector Selection in a Saturation Controller-Based Direct Torque Control for Permanent-Magnet Synchronous Motors

机译:基于饱和控制器的零电压矢量选择,用于基于饱和控制器的永磁同步电动机的直接扭矩控制

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This paper analyzes the effect of zero voltage vectors on the torque and stator flux of a direct torque controlled salient-pole permanent-magnet synchronous motor (PMSM). Four different schemes of using the zero voltage vectors are studied for an adaptive saturation controller-based direct torque control (DTC) system for salient-pole PMSMs. The four schemes generate four different pulse-width modulation (PWM) waveforms in each control cycle of the DTC system, which are three-voltage-vectors-based minimum discontinuous PWM (DPWMMIN), maximum discontinuous PWM (DPWMAX), and discontinuous PWM (DPWM), and four-voltage-vectors-based continuous PWM (CPWM). Compared to the DPWMMIN, DPWM, and DPWMMAX, the CPWM can achieve a lower torque ripple, less steady-state torque error, and more sinusoidal stator current with a higher switching frequency and, therefore, has a higher switching loss of the power converter. The effect of different zero voltage vector selection schemes is verified by both simulation and experimental results for a 200-W salient-pole PMSM drive system.
机译:本文分析的零个电压矢量上的直接转矩控制的凸极永磁同步电动机(PMSM)的扭矩和定子通量的影响。使用零个电压向量的四个不同的方案进行了研究用于凸极PMSMs自适应基于控制器的饱和度的直接转矩控制(DTC)系统。在四种方案生成四个不同的脉冲宽度调制(PWM)在DTC系统,其中的每个控制周期的波形三电压矢量为基础的最小不连续PWM(DPWMMIN),最大连续PWM(DPWMAX),和非连续PWM(基于四电压矢量-DPWM),和连续的PWM(CPWM)。相较于DPWMMIN,DPWM,和DPWMMAX,所述CPWM可以实现较低的转矩脉动,小于稳态转矩误差,并且更正弦定子电流具有较高的开关频率,因此,具有与功率转换器的较高的开关损耗。不同零电压矢量的选择方案的效果是通过仿真和对于200-W凸极永磁同步电动机的驱动系统的实验结果验证。

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