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Improved Speed Operation of Sensorless BLDC Motor Drives Using IIR Digital Filter

机译:使用IIR数字滤波器改进无传感器BLDC电机驱动器的速度操作

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This paper presents improved sensorless operation of permanent magnet brushless DC motor (BLDC) based back-EMF digital filtering using the dsPIC30F6010 microcontroller. Normally, the back-EMF signal of the unexcited phase winding has significant noise distortion PWM signals which are used to vary the applied voltage, and therefore the speed of the motor. So it is relatively difficult to detect the zero-crossing event of the back-EMF waveform due to the coupled PWM noise. Improved back-EMF signal can be generated via infinite impulse response digital filter (IIR filter) so that the back-EMF looks more like ideal signal for easier zero-crossing detection. The proposed voltage controlled scheme together with IIR digital filter includes control capability for both low speed PWM control and high speed phase advance commutation to obtain an extended speed range operation. Design of IIR digital filter and control simulation are performed in Matlab Simulink to optimize the proposed control algorithm which could be particularly suitable for cost sensitive products such as air purifiers, air blowers, cooling fans, and related home appliances. Theoretical analysis and experiments are conducted over a wide operating speed range and different back EMF waveforms to validate the effectiveness of the proposed method.
机译:本文采用DSPIC30F6010微控制器提高了基于VEL-EMF数字滤波的永磁无刷直流电机(BLDC)的无传感器操作。通常情况下,未激励的相绕组的反电动势信号具有用于改变所施加的电压的噪声显著失真的PWM信号,因此,电动机的速度。因此,由于耦合的PWM噪声,检测反态波形的零交叉事件相对困难。可以通过无限脉冲响应数字滤波器(IIR滤波器)产生改进的反态信号,使得后射出显示更像是更像零交叉检测的理想信号。所提出的电压控制方案与IIR数字滤波器一起包括用于低速PWM控制和高速相位提前换向的控制能力,以获得扩展速度范围操作。 Matlab Simulink中的IIR数字滤波器和控制仿真的设计,优化了所提出的控制算法,该算法可能特别适用于成本敏感产品,如空气净化器,鼓风机,冷却风扇和相关家用电器。理论分析和实验在宽的操作速度范围和不同的反态波形波形上进行,以验证所提出的方法的有效性。

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