首页> 外文会议>Industry Applications Conference, 1996. Thirty-First IAS Annual Meeting, IAS '96., Conference Record of the 1996 IEEE >Design and implementation of a closed-loop observer and adaptive controller for induction motor drives
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Design and implementation of a closed-loop observer and adaptive controller for induction motor drives

机译:感应电动机驱动器的闭环观测器和自适应控制器的设计与实现

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This paper discusses the implementation and experimental results of a closed-loop rotor flux observer and model reference adaptive system (MRAS) of a direct field-oriented control of an induction motor drive. The motor was supplied from a high frequency (20 kHz) AC resonant link via an MCT-based bidirectional converter. Hardware and software implementations of the various motor control functions are presented. The closed-loop observer combines the current and voltage models via a speed-dependent gain. The current model was formulated to operate in the rotor reference frame, and requires only an encoder angle, and not the actual rotor speed for implementation. The closed-loop observer permits the use of a pure analog integrator to calculate an adequate stator flux. The use of an AC resonant link further complicated an all digital calculation of the stator flux. The observer and adaptive controller were tested on a 400 Hz, 2 hp induction motor for low and high speeds. The closed-loop observer showed sensitivity at low speeds. This was attributed to the current model rotor flux estimation. At high speed the closed-loop observer followed the voltage model rotor flux estimation attributes. The MRAS was able to improve the complete speed response by correcting the current model rotor flux observer for errors in the estimation of its parameters.
机译:本文讨论了感应电动机驱动的直接磁场定向控制的闭环转子磁通观测器和模型参考自适应系统(MRAS)的实现和实验结果。电机通过基于MCT的双向转换器从高频(20 kHz)交流谐振链路供电。介绍了各种电机控制功能的硬件和软件实现。闭环观测器通过速度相关的增益将电流和电压模型组合在一起。当前模型被公式化为可在转子参考系中运行,并且仅需要一个编码器角度,而无需实际转子速度即可实施。闭环观测器允许使用纯模拟积分器来计算适当的定子磁通。交流谐振链路的使用使定子磁通的全数字计算更加复杂。观察者和自适应控制器在400 Hz,2 hp感应电动机上进行了低速和高速测试。闭环观察者在低速下显示出灵敏度。这归因于当前模型的转子磁通估算。在高速下,闭环观测器遵循电压模型的转子磁通估计属性。通过校正当前模型转子磁通观测器的参数估计误差,MRAS能够改善完整的速度响应。

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