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Novel Speed and Rotor Position Estimation Strategy Using a Dual Observer for Low-Resolution Position Sensors

机译:低分辨率位置传感器使用双观测器的新型速度和转子位置估计策略

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摘要

Recently, high-performance ac motor drive technologies, including field-oriented control (FOC), have been widely used in home appliance products such as direct-drive drum washing machines. In low-cost ac machine drive systems, speed or position sensors with high resolution are not available due to high costs. Instead, a low-resolution sensor is installed to calculate the speed and rotor position. In the FOC, however, accurate rotor angle information is essential for high performance. In addition to the low resolution of the sensor, its accuracy is poor due to mechanical errors and signal processing. The inaccurate and delayed position information degrades the performance of current regulation and also increases torque ripples, which is the source of mechanical vibration and acoustic noise. In order to overcome this hardware problem, this study proposes a software technique based on a novel dual observer and a position sensor offset compensation strategy. The dual observer can estimate the rotor speed and position without time delay or bumps. Also, with the compensation algorithm for position sensor offset, the misaligned synchronous reference frame $d$- and $q$-axis can be corrected. Experimental results verify the effectiveness of the proposed method.
机译:最近,高性能的交流电动机驱动技术(包括磁场定向控制(FOC))已广泛用于家用电器产品,例如直接驱动式滚筒洗衣机。在低成本的交流电机驱动系统中,由于成本高,无法提供高分辨率的速度或位置传感器。而是安装了低分辨率传感器来计算速度和转子位置。但是,在FOC中,准确的转子角度信息对于高性能至关重要。除了传感器的分辨率低外,由于机械误差和信号处理,其精度也很差。位置信息的不正确和延迟会降低电流调节的性能,还会增加转矩脉动,这是机械振动和声音噪声的来源。为了克服这一硬件问题,本研究提出了一种基于新型双观察器和位置传感器偏移补偿策略的软件技术。双重观察者可以估计转子速度和位置,而不会出现时间延迟或碰撞。同样,利用用于位置传感器偏移的补偿算法,可以校正未对准的同步参考系$ d $-和$ q $轴。实验结果证明了该方法的有效性。

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