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A Sensor-less Speed Control of Induction Motor Based on Robust Rotor Flux Observer

机译:基于鲁棒转子通量观测器的感应电动机的速度控制

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The induction motor is the principal source of the workhorse [1] in the industry. However, due to its high non linearity, a high-performance control of induction motor remains a challenge for the automation. In this paper, we present a robust solution for the observer and control of the induction machine taking into account the iron losses. The proposed technique is based on Lyapunov theory and application of the bilinear matrix inequalities framework. Thus, an adaptive mechanism is introduced to cover not only uncertainty parameters but also the rotor speed which is derived from the satisfaction of the first condition of the Lyapunov theory. The observer gain is calculated by solving the bilinear matrix inequality (BMI) to satisfy the second condition of Lyapunov. Some simulation results are given to demonstrate the robustness and performance of the proposed solution.
机译:感应电动机是行业工作主题的主要来源。然而,由于其高的非线性,对自动化的高性能控制仍然是挑战。在本文中,我们考虑到铁损,我们为观察者提供了一种稳健的解决方案,并考虑到熨烫机器。所提出的技术基于Lyapunov理论和双线性矩阵不等式框架的应用。因此,引入了一种自适应机构以覆盖不确定参数,而且引入不确定的参数,而且还引入转子速度,该转子速度来自Lyapunov理论的第一个条件的满足。通过求解双线性矩阵不等式(BMI)来计算观察者增益以满足Lyapunov的第二条件。提供了一些模拟结果证明了所提出的解决方案的稳健性和性能。

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