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Overmodulation and Field Weakening in Direct Torque Control of Induction Motor Drives

机译:感应电动机驱动器直接扭矩控制中的过度调制和现场弱化

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During transient states, for instance during acceleration and deceleration, the inverter used in an induction motor drive normally operates in overmodulation in order to efficiently utilize the DC-link voltage. Beyond the based-speed, the flux is normally reduced proportionally with speed to extend the speed range of the drive system. The capability of the induction motor drive under overmodulation and field weakening modes are important, especially in electric vehicle applications, where the available power is limited and the speed range needs to be increased to avoid the use of the mechanical gears. This paper presents the performance of the direct torque control (DTC) of an induction motor drive under the overmodulation and field weakening conditions for constant frequency torque controller-based DTC drive. The results obtained showed that the drive system is capable of operating in overmodulation and field weakening regions without resolving to the common approach of space vector modulation (SVM) based approach.
机译:在瞬态状态期间,例如在加速和减速期间,在感应电动机驱动器中使用的逆变器通常在过调制中操作,以便有效地利用DC-LING电压。除了基于速度之外,磁通量通常以速度成比例地减小,以延长驱动系统的速度范围。在过度调制和现场弱化模式下的感应电动机驱动的能力很重要,特别是在电动车辆应用中,其中可用功率受到限制并且需要增加速度范围以避免使用机械齿轮。本文介绍了基于恒定频率扭矩控制器的DTC驱动器的过常调和现场弱化条件下感应电动机驱动的直接转矩控制(DTC)的性能。所得到的结果表明,驱动系统能够在过度调制和现场弱化区域中操作,而不解决基于空间矢量调制(SVM)的常见方法。

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