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Low-frequency signal-injection method for speed sensorless vector control of induction motors

机译:异步电动机无速度传感器矢量控制的低频信号注入方法

摘要

A new method for the speed sensorless vector control of induction motors at low speeds is presented. The method overcomes the well-known low-speed limitations of conventional methods based on an ideal motor model, yet without relying on a more detailed motor model or parasitic effects. To overcome the low-speed limitations, the ideal motor model is augmented with mechanical dynamics. The response of the electromechanical system to a low-frequency ac current signal injected into the stator winding depends on the direction of the signal relative to the rotor flux direction. Based on this dependency, a new algorithm for rotor flux angle estimation, applicable when the total moment of inertia is not too high, is developed. The estimation method tolerates any low-speed operation point, including zero stator frequency, which is validated by simulations and experiments. The robustness of the method against errors in motor parameter estimates is shown both theoretically and experimentally. The algorithm is also combined with a full-order flux observer, yielding fast dynamics in addition to steady-state stability at low speeds.
机译:提出了一种用于低速感应电动机的无速度矢量控制的新方法。该方法克服了基于理想电机模型的传统方法众所周知的低速限制,但又无需依赖更详细的电机模型或寄生效应。为了克服低速限制,理想的电机模型增加了机械动力学特性。机电系统对注入到定子绕组中的低频交流电流信号的响应取决于信号相对于转子磁通方向的方向。基于这种依赖性,开发了一种新的转子磁通角估计算法,该算法适用于总惯性矩不太高的情况。该估计方法可以容忍任何低速运行点,包括零定子频率,这已通过仿真和实验验证。理论上和实验上都表明了该方法对电机参数估计误差的鲁棒性。该算法还与全阶通量观测器相结合,除了在低速下具有稳态稳定性外,还具有快速的动态特性。

著录项

  • 作者

    Leppänen Veli-Matti;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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