基于矢量控制感应电机驱动的36脉冲交直流变换器t型逆变器

Piyush Kant, Bhim Singh
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引用次数: 0

摘要

在这项工作中,提出了一种用于中高额定值应用的矢量控制感应电机驱动器(VCIMD)。在驱动器的输入端,采用36脉冲AC-DC转换器,将公用电流谐波限制在IEEE-519标准中规定的可接受水平。驱动端采用5电平t型多电平逆变器,提高了VCIMD的稳态、动态和电能质量性能。为了避免t型逆变器输入端的电压平衡问题,采用了隔离直流电源。这些隔离电源来自于一个三角多边形配置的移相变压器,随后是六个脉冲二极管桥式整流器(DBRs)。为了控制t型逆变器和感应电动机,分别采用了简单相位配置(PD)正弦脉宽调制(SPWM)和间接矢量控制。所提出的驱动器在感应电动机的所有可能操作下进行检查。对所提出的基于VCIMD的36脉冲交直流变换器馈电5电平t型逆变器进行了建模,并在Simulink/MATLAB环境下对其性能进行了仿真,验证了其在中高功率应用中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thirty-six pulse AC-DC converter fed T-type inverter based vector controlled induction motor drive
In this work, a vector controlled induction motor drive (VCIMD) is proposed for the medium and high rating applications. At input end of the proposed drive, a thirty-six pulse AC-DC converter is used to limit the utility current harmonics to acceptable level as specified in IEEE-519 standard. A 5-level T-type multilevel inverter is used at the drive end to improve the steady state, dynamic and power quality performances of VCIMD. To avoid voltage balancing problem at the input of a T-type inverter, the isolated DC supplies are used. These isolated supplies are derived from a delta-polygon configured phase shifting transformer followed by six pulse diode bridge rectifiers (DBRs). In order to control a T-type inverter and an induction motor, the simple phase disposition (PD) sinusoidal pulse width modulation (SPWM) and the indirect vector control are used, respectively. The proposed drive is examined under all possible operations of an induction motor. The proposed thirty-six pulse AC-DC converter fed 5-level T-type inverter based VCIMD is modelled and its performance is simulated in Simulink/MATLAB environment to demonstrate its effectiveness for the medium and high rating applications.
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