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High-performance induction motor speed control using exact feedback linearization with state and state derivative feedback

机译:使用状态和状态导数反馈的精确反馈线性化的高性能感应电动机速度控制

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摘要

This paper presents a novel nonlinear speed/position control strategy for the induction motor utilizing exact feedback linearization with state and state derivative feedback. The speed/position and flux control loops utilize nonlinear feedback which eliminates the need for tuning, while ordinary proportional-integral controllers are used to control the stator currents. The control scheme is derived in rotor field coordinates and employs an appropriate estimator for the estimation of the rotor flux angle, flux magnitude, and their derivatives. The overall control scheme can be easily implemented with a microprocessor-based control platform. An error sensitivity analysis is included which proves the system to be robust to parameter variation and even more, immune to rotor resistance variation. Simulation and experimental results validate the theoretical part of the paper and reveal the high performance and advantages of the novel control scheme.
机译:本文提出了一种利用状态和状态导数反馈的精确反馈线性化的异步电动机新型非线性速度/位置控制策略。速度/位置和磁通量控制回路利用非线性反馈,消除了调整的需要,而普通的比例积分控制器则用于控制定子电流。该控制方案是在转子磁场坐标中得出的,并采用适当的估计器来估计转子磁通量角,磁通量大小及其导数。总体控制方案可以通过基于微处理器的控制平台轻松实现。包括误差敏感性分析,证明该系统对参数变化具有鲁棒性,甚至对转子电阻变化具有抵抗力。仿真和实验结果验证了本文的理论部分,并揭示了新型控制方案的高性能和优势。

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