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Analysis and Implementation of Parallel Connected Two-Induction Motor Single-Inverter Drive by Direct Vector Control for Industrial Application

机译:直接矢量控制并联两感应电动机单变频器驱动工业分析与实现

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摘要

Sensorless-based direct vector control techniques are widely used for three-phase induction motor drive, whereas in case of multiple-motor control, it becomes intensively complicated and very few research articles in support to industrial applications were found. A straight-forward direct vector control with sensorless operation for parallel connected two similar-rated induction motors driven by single three-phase inverter is proposed and verified numerically by simulation software test under balanced and unbalanced conditions. The proposed control algorithm adapts the natural observer to estimate the rotor speed, rotor flux, and load torque of both motors. Simulation results along with theoretical background provided in this paper confirm the feasibility of operation of the ac motors and proves reliability for industrial applications.
机译:基于无传感器的直接矢量控制技术已广泛用于三相感应电动机驱动,而在多电动机控制的情况下,它变得非常复杂,并且很少有支持工业应用的研究文章。提出了一种由单个三相逆变器驱动的并联连接的两个相似额定感应电动机的无传感器运行的直接直接矢量控制,并通过仿真软件在平衡和不平衡条件下进行了数值验证。提出的控制算法使自然观察者适应估计两个电动机的转子速度,转子磁通和负载转矩。仿真结果以及本文提供的理论背景证明了交流电动机运行的可行性,并证明了其在工业应用中的可靠性。

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