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首页> 外文期刊>Journal of Zhejiang University. Science, A >Optimization of total harmonic current distortion and torque pulsation reduction in high-power induction motors using genetic algorithms
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Optimization of total harmonic current distortion and torque pulsation reduction in high-power induction motors using genetic algorithms

机译:使用遗传算法优化高功率感应电动机的总谐波电流失真和扭矩脉动降低

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This paper presents a powerful application of genetic algorithm (GA) for the minimization of the total harmonic current distortion (THCD) in high-power induction motors fed by voltage source inverters, based on an approximate harmonic model. That is, having defined a desired fundamental output voltage, optimal pulse patterns (switching angles) are determined to produce the fundamental output voltage while minimizing the THCD. The complete results for the two cases of three and five switching instants in the first quarter period of pulse width modulation (PWM) waveform are presented. Presence of harmonics in the stator excitation leads to a pulsing-torque component. Considering the fact that if the pulsing-torques are at low frequencies, they can cause troublesome speed fluctuations, shaft fatigue, and unsatisfactory performance in the feedback control system, the 5th, 7th, 11th, and 13th current harmonics (in the case of five switching angles) are constrained at some pre-specified values, to mitigate the detrimental effects of low-frequency harmonics. At the same time, the THCD is optimized while the required fundamental output voltage is maintained.
机译:本文提出了一种强大的应用遗传算法(GA),用于基于近似谐波模型,通过电压源逆变器馈电的高功率感应电动机中的总谐波电流失真(THCD)的强大应用。也就是说,已经确定了所需的基本输出电压,确定最佳脉冲图案(切换角)以产生基本输出电压,同时最小化THCD。提出了脉冲宽度调制(PWM)波形第一季度三个和五个开关时刻的两种情况下的完整结果。定子激励中的谐波的存在导致脉冲 - 扭矩部件。考虑到脉冲 - 扭矩处于低频时,它们可以在反馈控制系统中导致麻烦的速度波动,轴疲劳和不令人满意的性能,第五,第7页,第11和第13个电流谐波(在五个情况下切换角)受到一些预先指定值的约束,以减轻低频谐波的不利影响。同时,THCD优化,同时保持所需的根本输出电压。

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