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Discrete space vector modulation algorithm based vector controlled induction motor drives for reduced ripple

机译:基于离散的空间矢量调制算法,用于减少纹波的矢量控制感应电动机驱动器

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This paper presents a discrete space vector modulation (DSVM) algorithm based vector controlled induction motor drive for reduced torque and current ripples in steady state. Though, the conventional vector control algorithm gives good transient and steady state response, the complexity involved is more due to the reference frame transformations. Later, the direct torque control (DTC) was developed with reduced complexity. But, it gives large steady state ripple. Hence, to overcome the drawbacks of vector and DTC algorithms, a simple and novel vector control algorithm is proposed in this paper. The proposed algorithm combines the principles of both control algorithms. The reference currents are calculated based on the vector control. Then, the current error signals will be generated by comparing the actual and reference currents. By using the current error signals, sector information and lookup table, a suitable voltage vector is selected in order to keep the current errors within the hysteresis bands as per the principle of direct torque control. To validate the proposed lookup tables based vector control algorithm, numerical simulation studies have been carried out and compared. The results show the effectiveness of the proposed algorithm.
机译:本文介绍了一种离散空间矢量调制(DSVM)算法的载体控制感应电动机驱动,用于稳定状态的减小的扭矩和电流波纹。虽然,传统的矢量控制算法提供良好的瞬态和稳态响应,因此由于参考帧变换而涉及的复杂性。后来,直接扭矩控制(DTC)具有降低的复杂性。但是,它给出了大的稳态涟漪。因此,为了克服矢量和DTC算法的缺点,本文提出了一种简单和新的载体控制算法。所提出的算法结合了控制算法的原理。基于矢量控制计算参考电流。然后,通过比较实际和参考电流来生成当前误差信号。通过使用当前误差信号,扇区信息和查找表,选择合适的电压矢量,以便根据直接扭矩控制的原理保持滞后带内的电流误差。为了验证所提出的基于查找表的载体控制算法,已经进行了数值模拟研究并进行了比较。结果表明了该算法的有效性。

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