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Accurate Low-Speed and Torque Controls for Induction Motor With Secondary Current Feedback Using MI Sensor Installed in Shaft Hole

机译:使用安装在轴孔中的MI传感器对具有次级电流反馈的异步电动机进行精确的低速和转矩控制

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摘要

An accurate stationary low-speed and torque control system for induction motors (IM) with a secondary current (I2) signal feedback loop is presented, in which a sensitive and stable micromagnetic (MI) sensor is set inside a drilled shaft hole to detect a slip frequency (sf) magnetic field proportional to an endring circular current. A finite impulse response digital low-pass filter (FIR-DLPF) is introduced to separate the I2 signal from slightly higher frequency drive current I1 signal at a low speed IM operation for such as the steel sheet rolling spread control. Accurate stationary low speed (45 r/min) control with error less than 1.11% and stationary torque (1.3 Nmiddotm at 45 r/min) control with error less than 0.76% for a 1.5 kW, 4-pole IM through 83 min operation were obtained, respectively
机译:提出了一种具有次级电流(I2)信号反馈回路的感应电动机(IM)的精确固定式低速和转矩控制系统,该系统在钻入的轴孔内设置了灵敏且稳定的微磁(MI)传感器,以检测电磁干扰。滑移频率(sf)磁场正比于端环圆形电流。引入了有限脉冲响应数字低通滤波器(FIR-DLPF),以便在低速IM操作(例如钢板轧制扩展控制)下将I2信号与频率稍高的驱动电流I1信号分离。对于1.5 kW,4极IM到83分钟的运行,精确的静态低速(45 r / min)控制误差小于1.11%,静态转矩(45 r / min时1.3 Nmiddotm)控制误差小于0.76%。分别获得

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