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A hybrid speed sensorless MTPA vector controller for IPMSM drive incorporated with online parameter identification

机译:集成在线参数识别的IPMSM驱动器的混合速度无传感器MTPA矢量控制器

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摘要

In this paper a hybrid sensorless speed method for Interior Permanent-Magnet Synchronous Motors (IPMSM) is proposed. This method works efficiently at very low up to rated speed. An adaptive full-order observer has been implemented in medium and high speeds using fictitious permanent-magnet model. At standstill and low speeds a signal injection method is augmented to an adaptive observer for better estimation. Adopted signal injection method superimposes a pulsating voltage on the voltage reference in the stator reference frame. In order to achieve good performance, a Maximum Torque Per Ampere (MTPA) vector controller is incorporated with a synchronous frame decoupling scheme. Since in applied control method the motor parameters are widely utilized, a Recursive Least Square algorithm (RLS) has been applied to online parameter identification. Finally, in order to evaluate the performance of the proposed method, a comprehensive set of simulations were performed.
机译:本文提出了一种用于室内永磁同步电动机(IPMSM)的无传感器混合速度方法。该方法在非常低的额定速度下仍可高效工作。使用虚拟永磁模型已在中高速实现了自适应全阶观测器。在静止和低速时,信号注入方法被增强为自适应观察器,以实现更好的估计。采用的信号注入方法将脉动电压叠加在定子参考系中的参考电压上。为了获得良好的性能,将最大每安培转矩(MTPA)矢量控制器与同步帧解耦方案结合在一起。由于在应用控制方法中电动机参数得到广泛利用,因此递推最小二乘算法(RLS)已应用于在线参数识别。最后,为了评估所提出方法的性能,进行了全面的仿真。

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