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Indirect rotor angle estimation in without permanent magnet brushless dc motor with employment of the Maxwell-Wien Bridge

机译:使用麦克斯韦-威恩桥的无永磁无刷直流电动机的间接转子角估计

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This paper presents a novel method to detect the rotor position of the without permanent magnet brushless dc (WPMBLDC) motor for the starting from standstill to a certain low speed. Use of assistant field replaced with permanent magnet in the rotor highlights this family of BLDC motors in comparison with conventional BLDC motors. The principle of the estimation is based on the variation of the instantaneous phase inductance information. Since the inductance parameter plays a significant role in the steady state and dynamic characteristics of electromagnetic device, the rotor position can be determined by using inductance bridge systems to measuring unknown inductance and resistance values. In this paper, we propose an improved sensorless drive method using the motor winding in Maxwell-Wien Bridge, the standard capacitor and the resistor in parallel with it must be adjusted to achieve balance in aligned position when the maximum inductance occurred. Injection extra voltage pulses periodically into unenergized phases for this ac bridge provided. The phase inductance varies with the rotor position, therefore the motor goes into unaligned position and Maxwell-Wien Bridge goes to unbalanced condition then varies the state of bridge output. It then continues to sense the rotor position while the motor running by applying the same procedure. Finally, experimental results are also presented for the motor to confirm the feasibility and practicability of the method.
机译:本文提出了一种新颖的方法来检测无永磁无刷直流(WPMBLDC)电动机的转子位置,以使其从静止状态启动到一定的低速运行。与传统的BLDC电动机相比,在转子中使用永磁体代替辅助磁场的特点突出了该BLDC电动机系列。估计的原理是基于瞬时相位电感信息的变化。由于电感参数在电磁设备的稳态和动态特性中起着重要作用,因此可以通过使用电感电桥系统测量未知的电感和电阻值来确定转子位置。在本文中,我们提出了一种改进的无传感器驱动方法,该方法使用麦克斯韦-威恩桥中的电动机绕组,必须调整标准电容器和与其并联的电阻器,以在出现最大电感时实现对齐位置的平衡。周期性地将额外的电压脉冲注入到提供的此交流电桥的未通电相中。相位电感随转子位置而变化,因此电动机进入不对准位置,麦克斯韦-维恩电桥进入不平衡状态,然后改变电桥输出的状态。然后,通过应用相同的程序继续感测电机运行时的转子位置。最后,还给出了电动机的实验结果,证实了该方法的可行性和实用性。

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