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Z-Source Inverter-Based Approach to the Zero-Crossing Point Detection of Back EMF for Sensorless Brushless DC Motor

机译:基于Z源逆变器的无传感器无刷直流电动机反电动势零交叉点检测方法

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摘要

Based on the Z-source inverter, this paper proposed a novel approach to zero-crossing point (ZCP) detections during the shoot-through vectors for sensorless brushless dc motor (BLDCM). The proposed approach separates the ZCP detections from speed adjustment, and makes the shoot-through vector not influence the motor speed-adjustment directly, while the zero-vectors and active-vectors are used exclusively to adjust the speed of BLDCM. With the proposed approach, the sensorless BLDCM can operate in a wide speed range without switching the detection points and the reference levels, and it is unnecessary to change the reference levels according to the PWM technique. The terminal voltages limited by diode can be directly compared with the reference zero level during the shoot-through vectors, so as to reduce the detection error caused by attenuation. Moreover, Z-source inverter not only provides boost voltage for sensorless BLDCM drive system, but also improves the utilization rate of dc source voltage and the safety of the drive system. In addition, this paper analyzed the terminal voltages of the floating phase during each vector. The experimental results verified the correctness of above theories and proved the effectiveness of the proposed approach.
机译:基于Z源逆变器,本文提出了一种新的方法来检测无传感器无刷直流电动机(BLDCM)的直通矢量期间的过零点(ZCP)。所提出的方法将ZCP检测与速度调节分开,并使直通矢量不直接影响电动机的速度调节,而零矢量和有效矢量专门用于调节BLDCM的速度。利用所提出的方法,无传感器BLDCM可以在较宽的速度范围内运行,而无需切换检测点和参考电平,并且无需根据PWM技术更改参考电平。在直通矢量期间,可以将二极管限制的端电压直接与参考零电平进行比较,以减少由衰减引起的检测误差。此外,Z源逆变器不仅为无传感器BLDCM驱动系统提供了升压电压,而且还提高了直流源电压的利用率和驱动系统的安全性。另外,本文分析了每个矢量期间的浮置相的端电压。实验结果验证了以上理论的正确性,证明了该方法的有效性。

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