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A new approach to direct torque control strategy with minimization torque pulsations in permanent magnets synchronous machines

机译:一种新的扭矩控制策略与永磁体同步机中最小化扭矩脉动的新方法

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In this paper, we present a new approach to direct torque control (DTC) with minimization torque pulsations in permanent magnet synchronous machines (PMSM). The synchronous machine torque control, based on the DTC structure, permits to obtained high dynamic performances. In classical DTC, due to the hysteresis based scheme, the switching frequency is variable, current distortion and torque ripple are more important. Moreover high sampling frequency is needed for digital implementation. In order to obtain a constant switching frequency and hence torque ripple minimization, we introduces a new control technique for PMSM. It consists of controlling directly the electromagnetic torque by using a modulated hysteresis controller. The improvements obtained are principally a constant switching frequency in the inverter and an important reduction of the torque ripple. A digital-signal-processor (DSP) based controller is used to study the application of direct torque control method for PMSM. The implementation in a test bench shows the effectiveness of this control. Results obtained by simulation and experimental tests of this strategy are presented.
机译:在本文中,我们提出了一种新的直接扭矩控制(DTC)的方法,最小化永磁同步机(PMSM)中的最小化扭矩脉动。基于DTC结构的同步机扭矩控制允许获得高动态性能。在经典DTC中,由于基于滞后的方案,开关频率是可变的,电流失真和扭矩脉动更为重要。此外,需要高采样频率进行数字实现。为了获得恒定的开关频率,因此扭矩纹波最小化,我们向PMSM引入了一种新的控制技术。它包括通过使用调制滞后控制器来直接控制电磁扭矩。所获得的改进主要是逆变器中的恒定开关频率和扭矩脉动的重要降低。基于数字信号处理器(DSP)的控制器用于研究PMSM直接扭矩控制方法的应用。测试台中的实现显示了这种控制的有效性。提出了通过模拟和实验测试获得的结果。

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