DSP in the loop implementation of an improved sliding mode control for induction motor drive

Mohammed El Haissouf, Mustapha El Haroussi, A. Ba-Razzouk
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Abstract

This paper deals with the design and processor in the loop implementation of an improved sliding mode control of three-phase induction motor. Studied control strategy uses a state-space model expressed in the rotor flux frame. Proposed control strategy is designed in two steps based in cascaded method. This controller is based on new smooth functions replacing sign functions to reduce chattering phenomenon. This work integrates also a calculation of controller parameters to ensure set response times. It focuses on the study of these proposed techniques and their effect on motor waveforms. For code generation of the control algorithm, implementation and validation by processor in the loop technique we have created a platform based on MATLAB/Simulink with code composer studio as integrated development environment and the development board LAUNCHXL-F28069M from Texas instruments. Obtained results show that the proposed strategy reduces chattering using a simple algorithm.
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用于感应电机驱动的改进型滑模控制的 DSP 环内实施
本文论述了改进的三相感应电机滑模控制的设计和环路内处理器的实现。所研究的控制策略使用了以转子磁通框架表示的状态空间模型。所提出的控制策略是基于级联方法分两步设计的。该控制器采用新的平滑函数取代符号函数,以减少颤振现象。这项工作还整合了控制器参数的计算,以确保设定的响应时间。工作重点是研究这些建议的技术及其对电机波形的影响。为了生成控制算法的代码、通过处理器环路技术进行实施和验证,我们创建了一个基于 MATLAB/Simulink 的平台,并将 code composer studio 作为集成开发环境和德州仪器公司的 LAUNCHXL-F28069M 开发板。获得的结果表明,所提出的策略利用简单的算法减少了颤振。
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