Improved Drive Performance of Linear Induction Machine Based on Direct Thrust Control and Sliding Mode Control with Extended State Observer Applied for Linear Metro
ID:94 View Protection:ATTENDEE Updated Time:2021-06-19 16:59:02 Hits:1528 Oral Presentation

Start Time:2021-07-02 16:00(Asia/Shanghai)

Duration:20min

Session:S1 Concurrent Session 1 » S1-2Oral Session 7 & 9

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Abstract
Abstract—In this paper, a terminal sliding-mode (TSM) speed regulation algorithm is proposed to enhance the transient characteristics of the linear induction motor (LIM) drive system. Moreover, an extended load thrust observer (ELTO) has been designed to recompense the proposed TSM speed controller at load perturbations or any uncertain condition. The proposed TSM speed controller with ESLTO has combined the direct thrust control with space vector modulation (DTC-SVM) strategy to achieve the speed, electromagnetic thrust, and primary flux-linkage tracking objectives under different operating conditions. The proposed control strategy, (TSMC-DTC), can get a good transient response with a high-speed tracking accuracy as compared to the linear DTC (PI-DTC) and the conventional sliding mode DTC (CSMC-DTC) strategies. Comparative results ensure that the suggested control method has fast speed response, less steady-state error and better steady-state behavior in comparison to those of the traditional control strategies.
Keywords
Sliding mode control (SMC), direct thrust control (DTC), linear induction machine (LIM), end effects.
Speaker
Mosaad Mohiedden Ali
Department of Electrical Engineering; Faculty of Engineering; Kafrelsheikh University

Submission Author
Mosaad Mohiedden Ali Department of Electrical Engineering; Faculty of Engineering; Kafrelsheikh University
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  • Conference Date

    Jul 01

    2021

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    Jul 04

    2021

  • Jul 03 2021

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  • Nov 03 2021

    Registration deadline

Sponsored By
Huazhong University of Science and Technology, China
Supported By
University of Sydney, Australia
Southwest Jiaotong University, China
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