首页> 外文会议>2010 International Conference on Electrical Machines and Systems >Low speed and standstill operation of sensorless direct torque and flux controlled IPM synchronous motor fed by matrix converter
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Low speed and standstill operation of sensorless direct torque and flux controlled IPM synchronous motor fed by matrix converter

机译:矩阵转换器提供的无传感器直接转矩和磁通量控制的IPM同步电动机的低速和静止操作

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This paper proposes a sensorless direct torque and flux control system using indirect space vector modulation for matrix converter driven IPM synchronous machine, operating over a wide speed range including standstill. A novel stator flux observer is enhanced by introducing a correction term in the adaptive model, derived from the d-axis current estimation error at high and medium speeds and from the error signal of high-frequency signal injection at low speeds. The closed-loop control of torque and stator flux is achieved by a variable-structure torque and flux controller and indirect space vector modulation (ISVM) technique. The effect of the input filter capacitor on the input current is compensated by introducing a correcting angle in the ISVM. The effectiveness of the proposed sensorless DTFC-ISVM matrix converter drives is verified by experiments.
机译:本文为矩阵变换器驱动的IPM同步电机提出了一种使用间接空间矢量调制的无传感器直接转矩和磁通控制系统,该系统可在包括静止状态在内的较宽速度范围内运行。通过在自适应模型中引入一个校正项来增强一种新颖的定子磁通观测器,该校正项是根据高速和中速时的d轴电流估计误差以及低速时的高频信号注入的误差信号得出的。转矩和定子磁通的闭环控制是通过可变结构的转矩和磁通控制器以及间接空间矢量调制(ISVM)技术实现的。通过在ISVM中引入校正角,可以补偿输入滤波电容对输入电流的影响。通过实验验证了所提出的无传感器DTFC-ISVM矩阵转换器驱动器的有效性。

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