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Adaptive control strategy with flux reference optimization for sensorless induction motors

机译:无磁感应电动机的带有磁通参考值优化的自适应控制策略

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Avoiding mechanical (speed, torque) sensors in electric motor control entails cost reduction and reliability improvement. Furthermore, sensorless controllers (also referred to output-feedback) are useful, even in the presence of mechanical sensors, to implement fault tolerant control strategies. In this paper, we deal with the problem of output-feedback control for induction motors. The solutions proposed so far have been developed based on the assumption that the machine magnetic circuit characteristic is linear. Ignoring magnetic saturation makes it not possible to meet optimal operation conditions in the presence of wide range speed and load torque variations. Presently, an output-feedback control strategy is developed on the basis of a motor model that accounts for magnetic saturation. The control strategy includes an optimal flux reference generator, designed in order to optimize energy consumption, and an output-feedback designed using the backstepping technique to meet tight speed regulation in the presence of wide range changes in speed reference and load torque. The controller sensorless feature is achieved using an adaptive observer providing the controller with online estimates of the mechanical variables. Adaptation is resorted to cope with the system parameter uncertainty. The controller performances are theoretically analyzed and illustrated by simulation.
机译:在电动机控制中避免使用机械(速度,扭矩)传感器会降低成本并提高可靠性。此外,即使在存在机械传感器的情况下,无传感器控制器(也称为输出反馈)也可用于实施容错控制策略。在本文中,我们处理感应电动机的输出反馈控制问题。迄今为止提出的解决方案是基于电机磁路特性是线性的假设而开发的。忽略磁饱和使得在宽范围速度和负载转矩变化的情况下无法满足最佳运行条件。当前,基于考虑磁饱和的电动机模型开发了输出反馈控制策略。该控制策略包括为优化能耗而设计的最佳磁通参考发生器,以及使用反推技术设计的输出反馈,以在速度参考和负载转矩发生大范围变化时满足严格的速度调节要求。控制器的无传感器功能是通过使用自适应观察器为控制器提供机械变量的在线估计来实现的。采取适应措施来应对系统参数不确定性。理论上分析了控制器的性能,并通过仿真进行了说明。

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