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Hardware-in-the-loop simulation based design and experimental evaluation of DTC strategies

机译:基于硬件在环仿真的DTC策略设计和实验评估

摘要

In this paper, a method for designing and implementing direct torque control of induction motor based on hardware-in-the-loop simulation (HIL simulation) is proposed. Two different strategies (1) Conventional direct torque control and (2) Space vector PWM based direct torque control are tested and implemented. The entire simulation is performed in real time using TMS320F240 digital signal processor. The dynamic machine model with 5 state variables is solved in real time in order to determine the state variables and hence various output quantities. Using the same controller and software used in HIL simulation and with additional signal conditioning interface circuitry, the results obtained from real time simulation are experimentally validated on a 1.5-kW induction motor drive. A new tool known as "automatic code generation" is introduced, which is capable of generating assembly language code for real time simulation of electric drives. The results of real time simulation and those obtained from a laboratory prototype are presented.
机译:本文提出了一种基于硬件在环仿真(HIL仿真)的感应电动机直接转矩控制的设计与实现方法。测试并实现了两种不同的策略(1)常规直接转矩控制和(2)基于空间矢量PWM的直接转矩控制。整个模拟使用TMS320F240数字信号处理器实时执行。实时求解具有5个状态变量的动态机器模型,以确定状态变量,从而确定各种输出量。使用HIL仿真中使用的相同控制器和软件,以及附加的信号调节接口电路,可以在1.5 kW感应电动机驱动器上对从实时仿真获得的结果进行实验验证。引入了一种称为“自动代码生成”的新工具,该工具能够生成汇编语言代码以进行电驱动器的实时仿真。给出了实时仿真的结果以及从实验室原型获得的结果。

著录项

  • 作者

    VAMSIDHAR S; FERNANDES BG;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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