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Scaling Gain Compensation Method for Current Measurement of Motor Drive Applications Under Locked-Rotor Condition Considering Inequality of Each Phase Resistances

机译:考虑各相电阻不等式的堵转条件下电机驱动应用电流测量的比例增益补偿方法

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This paper presents a scaling gain compensation method for current measurement of motor drive application under locked-rotor condition. In several applications such as elevators, cranes and so on, initial commissioning processes are performed under locked-rotor condition. To compensate the current scaling gain errors, the proposed method performs d-q axis current control according to two-phase sensing methods in the stationary reference frame. Thereafter, the three-phase scaling gains are estimated using the d-axis current command and the output d-axis voltage, and then, compensated. The proposed algorithm considers the inequality of the phase resistances so that the compensation performance can be improved. The validity of the proposed algorithm was verified through experiments.
机译:本文介绍了锁定转子条件下电机驱动应用的电流测量的缩放增益补偿方法。在若干应用中,例如电梯,起重机等,在锁定转子条件下执行初始调试过程。为了补偿电流缩放增益误差,所提出的方法根据静止参考帧中的两相传感方法执行D-Q轴电流控制。此后,使用D轴电流命令和输出D轴电压估计三相缩放增益,然后补偿。所提出的算法考虑了相电阻的不等式,以便可以提高补偿性能。通过实验验证了所提出的算法的有效性。

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