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Novel Square-Wave Signal Injection Method Using Zero-Sequence Voltage for Sensorless Control of PMSM Drives

机译:零序电压的新型方波信号注入方法用于PMSM驱动器的无传感器控制

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摘要

In this paper, a novel square-wave-type carrier signal injection method using zero-sequence voltage is proposed for sensorless control of permanent-magnet (PM) synchronous machine drives. Different from the conventional square-wave-type injection methods employed in the stationary reference frame and estimated synchronous reference frame, the proposed square-wave injection is performed on the estimated reference frame, which rotates anticlockwise at twice estimated rotor electrical angular speed. Compared to the conventional square-wave methods with carrier current sensing, the proposed strategy using zero-sequence voltage has two main advantages, 1) the amplitude of the resultant carrier response is not related to the injection frequency, and 2) the carrier response does not require differentiation calculation for rotor position estimation. Therefore, the proposed method is more robust and also much simpler for signal demodulation, which can combine the synergies of zero-sequence method and square-wave injection (i.e., increased accuracy, bandwidths, and stability, etc.). Finally, all the theoretical analyses are validated by experiments on a laboratory PM machine.
机译:本文提出了一种新的零序电压方波型载波信号注入方法,用于永磁同步电机驱动器的无传感器控制。与固定参考系和估计同步参考系中采用的常规方波注入方法不同,建议的方波注入是在估计参考系上执行的,估计参考系以两倍的估计转子电角速度逆时针旋转。与采用载波电流检测的传统方波方法相比,使用零序电压的拟议策略具有两个主要优点:1)所得载波响应的幅度与注入频率无关; 2)载波响应与转子位置估计不需要微分计算。因此,所提出的方法更健壮,并且对于信号解调也更加简单,其可以结合零序方法和方波注入的协同作用(即,提高的准确性,带宽和稳定性等)。最后,所有理论分析均通过实验室PM机器上的实验进行验证。

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