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Torque ripple minimization with optimized i_(sx) estimation in vector control of current source inverter induction motor

机译:电流源逆变器感应电动机矢量控制中具有优化i_(sx)估计的转矩脉动最小化

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摘要

In variable speed applications of high-power induction motors, current source inverters are usually used instead of voltage source inverters. Power switches delay and switching losses in high-power ranges, prevents inverters to operate properly in high frequencies. So the voltage and current waveforms of the motor supply consist of high harmonic content causing a high-torque ripple. One of the parameters that influences the torque ripple most is the stator flux reference value. Motors do not usually operate in their nominal load. Therefore, the optimum value of the flux is not equal to the nominal value. In this paper, an optimal i_(sx) reference for vector control system of current source inverter fed induction motor is produced by applying a simple estimator. Simulation results show that torque ripple has been reduced, especially in the loads less than their nominal power, as significantly as power factor has been improved. Also flux reduction causes to noticeable reduction in core and switching losses.
机译:在大功率感应电动机的变速应用中,通常使用电流源逆变器代替电压源逆变器。电源开关在大功率范围内的延迟和开关损耗会阻止逆变器在高频下正常运行。因此,电动机电源的电压和电流波形由高谐波含量组成,会引起高转矩纹波。影响转矩脉动的参数之一是定子磁通参考值。电机通常不会在其额定负载下运行。因此,通量的最佳值不等于标称值。本文通过一个简单的估计器,为电流源逆变器感应电动机的矢量控制系统提供了最佳的i_(sx)参考。仿真结果表明,随着功率因数的显着提高,转矩脉动得到了降低,尤其是在小于额定功率的负载中。磁通量的减少还导致铁芯和开关损耗的明显减少。

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