An IFOC-DSVPWM Based DC-Link Voltage Compensation of Z-Source Inverter Fed Induction Motor Drive for EVs

Ananda Kumar Akkarapaka, Dheerendra Singh
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引用次数: 2

Abstract

The drop in DC-link voltage of adjustable speed drives (ASD) occurs mainly due to the increase in output power demands. This may lead to inefficient operation and eventually the tripping of the drive. This paper presents a Double Space Vector Pulse Width Modulation (DSVPWM) technique for boosting and compensating the DC-link voltage of Z-source inverter (ZSI). The DSVPWM technique estimates the required shoot through period of the Z-source inverter to maintain the DC-link voltage constant at the desired level through capacitor voltage control. The DSVPWM can obtain maximum boost at any given modulation index in comparison to simple boost control (SBC) method. It also utilizes the dead time more effectively. The speed control of the ZSI fed induction motor drive is done by employing indirect field-oriented (IFO) control method. A 32-bit DSP (TMS320F28335) is used to implement the IFOC-DSVPWM method for ZSI. The power structure and the modulation technique are well suited for electric vehicle application.
基于IFOC-DSVPWM的z源逆变器直流电压补偿电动汽车感应电机驱动
调速驱动器(ASD)直流链路电压的下降主要是由于输出功率需求的增加。这可能导致效率低下的操作,并最终导致驱动器跳闸。本文提出了一种双空间矢量脉宽调制(DSVPWM)技术,用于提高和补偿z源逆变器(ZSI)直流链路电压。DSVPWM技术通过电容电压控制来估计z源逆变器所需的穿透周期,以保持直流链路电压恒定在期望的水平上。与简单升压控制(SBC)方法相比,DSVPWM可以在任何给定的调制指标下获得最大升压。它还能更有效地利用死区时间。采用间接磁场定向(IFO)控制方法对ZSI型异步电动机驱动器进行速度控制。采用32位DSP (TMS320F28335)实现ZSI的IFOC-DSVPWM方法。该电源结构和调制技术非常适合电动汽车的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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