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A MRLS with RMRAC Applied to Encoderless Speed Control without Time Rotor Dependence

机译:具有RMRAC的MRL应用于无需时间转子依赖的无编码速度控制

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This paper proposes a Robust Model Reference Adaptive Controller (RMRAC) for a speed sensorless induction motor drive. A Modified Recursive Least Squares (MRLS) is proposed to avoid the use of mechanical sensors. The MRLS is obtained by applying of a sigma-modification in Recursive Least Square (RLS), obtained from a linear model insensible to rotor resistance variations. The obtained controller is used to assure performance in a wide speed range, including low and zero speed conditions. Moreover, a direct estimation of the rotor flux estimation is used, so that the proposed scheme can be applied without shaft encoder and independent of the rotor resistance. Simulation results are given to show the effectiveness of the proposed controller.
机译:本文提出了一种用于速度传感器感应电动机驱动的强大模型参考自适应控制器(RMRAC)。提出了一种改进的递归最小二乘(MRLS)以避免使用机械传​​感器。通过在递归最小二乘(RLS)中的Sigma改性来获得MRLS,从而从不敏感转子电阻变化的线性模型获得。所获得的控制器用于确保在宽速度范围内的性能,包括低速度和零速度条件。此外,使用转子磁通估计的直接估计,从而可以在没有轴编码器的情况下施加所提出的方案并且独立于转子电阻。给出了仿真结果表明所提出的控制器的有效性。

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