基于3级联h桥多电平逆变器和模糊逻辑的感应电机直接转矩控制

A. Mortezaei, N. Azli, N. Idris, S. Mahmoodi, N. M. Nordin
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引用次数: 8

摘要

本文提出使用3电平级联h桥多电平逆变器(CHMI)拓扑,与基于2电平逆变器的直接转矩控制(DTC)相比,该拓扑可进一步减少转矩脉动。这是由于增加了逆变器开关电压矢量,使转矩误差最小化。这反过来又可以减少输出电压和电流的总谐波失真(THD)。本文还介绍了两种不同的控制方法,以选择合适的输出电压矢量,使转矩和磁链误差降至零。第一个是在传统的直接转矩控制方案的基础上,利用一对磁滞比较器和查找表选择输出电压矢量来控制转矩和磁链。第二种是基于一种新的模糊逻辑控制器(FLC),以Sugeno作为其推理方法,通过替换传统直接转矩控制方案中的滞回比较器和查找表来选择输出电压矢量。后者解决了前者的主要特点——开关频率可变的问题。采用FLC直接转矩控制不仅使磁链波纹明显减小,而且使相电流的THD减小,因为电流波形更加正弦化。仿真结果表明,与基于2级逆变器的直接转矩控制相比,采用3级CHMI控制可以减小转矩脉动,而模糊直接转矩控制则可以减小定子磁链脉动和相电流的THD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct torque control of induction machines utilizing 3-level cascaded H-Bridge Multilevel Inverter and fuzzy logic
This paper proposes the use of a 3-level Cascaded H-Bridge Multilevel Inverter (CHMI) topology which results in further torque ripple minimization compared to the 2-level inverter-based Direct Torque Control (DTC). This is due to the increase in the inverter switching voltage vectors that allows minimization of the torque error. This in turn can reduce the Total Harmonic Distortion (THD) of the output voltage and current as well. This paper also presents two different control methods in selecting the appropriate output voltage vector for reducing the torque and flux error to zero. The first is based on the conventional DTC scheme using a pair of hysteresis comparators and look-up table to select the output voltage vector for controlling the torque and flux. The second is based on a new fuzzy logic controller (FLC) with Sugeno as its inference method to select the output voltage vector by replacing the hysteresis comparators and look-up table in the conventional DTC scheme. The latter has solved the problem of variable switching frequency which is the main characteristic of the former. By using FLC DTC not only the flux ripples reduce significantly but also the THD of the phase current decreases since a more sinusoidal current waveform is achieved. The simulation results have proven that by using the 3-level CHMI, torque ripple reduction is obtained compared to the 2-level inverter-based DTC while fuzzy DTC shows reduction in the stator flux ripples and the THD of the phase current.
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