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Cites:

Information Journal Paper

Title

Indirect vector control of three phase induction motor based on a 2/3 level inverter

Pages

  127-141

Abstract

 Given the cost reduction of power switching devices, 2/3level Hybrid Inverters have been recently presented with the voltage generation capability close to the sinusoidal voltage. The Hybrid Inverter, while having the benefits of the conventional three-level inverters, has fewer switching devices, which will reduce the cost, size, and total weight of the inverter. In this paper, a 2/3 Hybrid Inverter containing eight switches and two diodes is used to control the speed of a three-phase asynchronous motor, which has four switches and two diodes less than the conventional three-level inverter. The indirect rotor‐ flux oriented vector control is proposed for speed control, the control loops of the system are designed, and a proper and efficient carrier wave based switching technique is proposed for the Hybrid Inverter. In order to verify the efficiency of the proposed inverter and its control, a variety of simulations are performed in the MATLAB/Simulink software and the speed control results in motor mode and step changes in load torque are presented.

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  • Cite

    APA: Copy

    Ghazi Ardakani, Mohammadjavad, Hosseinpour, Majid, shahparasti, mahdi, & SIAHI, MEHDI. (2020). Indirect vector control of three phase induction motor based on a 2/3 level inverter. JOURNAL OF MODELING IN ENGINEERING, 18(60 ), 127-141. SID. https://sid.ir/paper/389541/en

    Vancouver: Copy

    Ghazi Ardakani Mohammadjavad, Hosseinpour Majid, shahparasti mahdi, SIAHI MEHDI. Indirect vector control of three phase induction motor based on a 2/3 level inverter. JOURNAL OF MODELING IN ENGINEERING[Internet]. 2020;18(60 ):127-141. Available from: https://sid.ir/paper/389541/en

    IEEE: Copy

    Mohammadjavad Ghazi Ardakani, Majid Hosseinpour, mahdi shahparasti, and MEHDI SIAHI, “Indirect vector control of three phase induction motor based on a 2/3 level inverter,” JOURNAL OF MODELING IN ENGINEERING, vol. 18, no. 60 , pp. 127–141, 2020, [Online]. Available: https://sid.ir/paper/389541/en

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