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Observability-Index-Based Control Strategy for Induction Machine Sensorless Drive at Low Speed

机译:基于可观察指标的低速异步电机无传感器驱动控制策略

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摘要

This paper focuses on the observer-based methods for induction machine sensorless drive. It is well known that the use of speed observer is limited at a very low stator frequency due to speed unobservability. Some existing methods propose to avoid the zero-stator-frequency working points. These methods are nonetheless limited to high-torque operations. The first contribution of this paper is to analyze finely the speed observability, which leads to the definition of an observability index. The correlation between this index and the observer performance is analyzed and illustrated. The second contribution is to propose a control strategy that maximizes the observability index and improves the observer performance. The proposed strategy is tested first in open loop to evaluate the speed observer performance, and then, in closed loop to illustrate its pertinence for induction machine sensorless drive. All these results are validated by an experiment. The performed experimentation shows that the proposed control strategy gives better results than the existing method that avoid the zero-frequency working points. It offers a new path for induction machine sensorless drives.
机译:本文重点介绍基于观测器的感应电机无传感器驱动方法。众所周知,由于速度不可观察,速度观测器的使用被限制在非常低的定子频率上。一些现有方法建议避免零定子频率工作点。但是,这些方法仅限于高扭矩操作。本文的第一个贡献是精细地分析了速度可观察性,从而得出了可观察性指标的定义。分析和说明了该指标与观察者表现之间的相关性。第二个贡献是提出了一种控制策略,该策略可最大化可观察性指标并改善观察者性能。所提出的策略首先在开环中进行测试以评估速度观测器的性能,然后在闭环中说明其对感应电机无传感器驱动的相关性。所有这些结果均通过实验验证。进行的实验表明,与现有的避免零频工作点的方法相比,所提出的控制策略具有更好的效果。它为感应电机无传感器驱动器提供了一条新途径。

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