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Transducerless Acquisition of the Rotor Position for Predictive Torque Controlled PM Synchronous Machines Based on a DSP-FPGA Digital System

机译:基于DSP-FPGA数字系统的预测转矩控制永磁同步电机转子位置的无传感器采集

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摘要

In this paper, a wide-speed-range predictive direct torque control scheme for surface-mounted permanent magnet synchronous machines without rotational transducer is presented. At very low and zero speeds of operation, the identification of the rotor position is carried out by applying test voltage signals within the regular commutation process for predictive torque control, in order to detect the machine saliency produced by the stator magnetic saturation. Then, the acquired signals that are function of the rotor position are digitally processed through a quadrature phase-locked loop tracking observer. At middle-and-high speeds of operation the angular position of the rotor is estimated by using a predictive sliding-mode observer of the stator flux. A changeover algorithm is programmed for coupling both estimated values of the angular position of the rotor. Experimental results in a wide-speed-range obtained by using a hybrid digital system which consist of a digital signal processor (DSP) and of a field-programmable gate array (FPGA) verify the effectiveness of the proposed encoderless predictive control scheme.
机译:本文提出了一种无旋转传感器的表面安装式永磁同步电机的宽速度范围预测直接转矩控制方案。在极低的运行速度和零转速下,通过在常规换向过程中施加测试电压信号进行预测性转矩控制来识别转子位置,以检测定子磁饱和产生的电机显着性。然后,通过正交锁相环跟踪观测器对作为转子位置的函数的采集信号进行数字处理。在中等和较高的运行速度下,可通过使用定子磁通的预测滑动模式观测器来估算转子的角位置。编程了一种转换算法,用于耦合转子角位置的两个估计值。通过使用由数字信号处理器(DSP)和现场可编程门阵列(FPGA)组成的混合数字系统获得的宽速范围的实验结果验证了所提出的无编码器预测控制方案的有效性。

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