高速有刷直流电动机无传感器速度控制的模型辨识与验证

S. Kamdar, Harsidh Brahmbhatt, Tigmanshu Patel, M. Thakker
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引用次数: 6

摘要

本文介绍了一种不使用物理速度传感器,对中转矩(92.17 mN·m)、高速(9778 RPM)有刷直流电机进行精确调速的方法。反电动势是电机转速的代表值,它已进一步用于与速度相关。在定载、空载和变载情况下,进行了反电动势与电机转速的关系实验。所计算的速度与设定值比较后会产生误差数据。该误差由嵌入式系统开发的采样时间为50 ms的离散PID控制器进行校正。对直流电机模型进行了辨识和验证,确定了最优的P、I、D常数和传递函数,以实现精确的转速控制。闭环系统精确控制直流电机,稳定时间为2.45秒,峰值超调小于5%,速度控制精度小于满量程的+/- 1%。
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Sensorless speed control of high speed brushed DC motor by model identification and validation
The paper describes an accurate method for speed control medium torque (92.17 mN·m), high speed (9778 RPM) Brushed DC motor without using a physical speed sensor. The back EMF is a representative value for the rotational speed of the motor which has been further used for correlation with speed. Several experiments have been carried out to relate back EMF with speed of the motor rotating a fixed load, no load and variable load. The speed so calculated will generate the error data after comparison with set point. The error is corrected by a discrete PID controller with sampling time of 50 ms, developed in an embedded system. A model of DC motor is identified and validated to determine optimum P, I, D constants and transfer function for accurate speed control. The closed loop system gives an accurate control of DC motor with settling time of 2.45 seconds, peak overshoot of less than 5% and accuracy of speed control less than +/- 1% of full scale.
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