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Line voltage difference integral method of commutation error adjustment for sensorless brushless DC motor

机译:无传感器无刷直流电动机换相误差调整的线电压差积分方法

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Sensorless Brushless DC Motor (BLDCM) often suffers from the inaccurate commutation signal, which degrades the operation performance inevitably. The inaccurate commutation signal will increase the loss of motor and torque ripple. In order to achieve accurate commutation, this paper presents a novel commutation error compensation method for sensorless BLDCM. With this method, the voltage integral value of the line voltage difference during the 60-degree conduction period is used to adjust the commutation instants, which avoids the negative effects owing to the parameter variation and elevates the robustness of system from external disturbances. Compare with conventional commutation correction methods, reconstruction of the virtual neutral voltage is not required, which reduces the corresponding complexity of the hardware circuit design. In addition, the integral intervals are determined by commutation signals, which simplify the detection of the integral boundary. The experiment and simulation results verify the feasibility and effectiveness of the proposed method.
机译:无传感器无刷直流电动机(BLDCM)经常遭受换向信号不准确的困扰,这不可避免地降低了运行性能。换向信号不正确会增加电动机的损耗和转矩脉动。为了实现精确的换相,本文提出了一种新的无传感器BLDCM换相误差补偿方法。通过这种方法,可以使用60度导通期间线电压差的电压积分值来调整换向时刻,从而避免了因参数变化而产生的负面影响,并提高了系统不受外部干扰的鲁棒性。与传统的换向校正方法相比,不需要重构虚拟中性电压,从而降低了硬件电路设计的相应复杂性。另外,积分间隔由换向信号确定,这简化了积分边界的检测。实验和仿真结果验证了该方法的可行性和有效性。

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