两种直流电机速度观测器在无传感器速度控制系统中的比较

Bernadeta Wuri Harini, Martanto, Tjendro
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引用次数: 1

摘要

在无传感器电机速度控制系统中,电机速度不是用速度传感器直接测量的,而是用观测器来估计的。无传感器调速系统大多应用于交流电机,而在直流电机上的应用还不广泛。因此,本文提出了一种简单的观测器来估计直流电机的转速。所使用的观测器基于直流电机电方程。本研究采用了两种方法。第一种方法是观测器根据电阻值估计速度(L-R法),第二种方法是观测器仅根据电机的电阻值估计电机的速度(R法)。用电枢电流(ia)和电压(va)估计速度。因此,采用了电流和电压传感器。不仅估计了观测器,而且还在实际直流电机上实现了观测器。使用Arduino微控制器计算速度。LN298被用作直流电机驱动器。尽管R方法更简单,但测试结果表明,其速度估计精度低于L-R方法。通过人工计算,L-R法的电机转速估计结果误差为0.14%,R法的电机转速估计结果误差为5.03%。L-R法在实际直流电机和单片机系统上实现的电机转速估计结果误差为3.98%,而R法的电机转速估计结果误差为4.87%。
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Comparison of Two DC Motor Speed Observers on Sensorless Speed Control Systems
In a sensorless motor speed control system, the motor speed is not directly measured using a speed sensor, but it is estimated using an observer. The sensorless speed control systems are mostly applied to AC motors, while they have not been widely applied to DC motors. Therefore, this paper presents simple observers to estimate the DC motor speed.  The observers used were based on the DC motor electric equation. Two methods were used in this research. The first method was the observer estimating the speed based on the resistance inductance values (L-R method), while the second was the observer estimating the motor’s speed only based on the motor’s resistance value (R method). The speed was estimated using armature current (ia) and voltage (va). Therefore, a current and voltage sensor was used. Not only was the observer estimated, but it was also implemented on a real DC motor. An Arduino microcontroller was used to calculate the speed. The LN298 was used as a DC motor drive. Even though the R method is simpler, the test result showed that its speed estimation was less precise than the L-R method.  By manual calculation, the motor speed estimation result in the L-R method had an error of 0.14%, while the motor speed estimation results in the R method had an error of 5.03%. The estimation results of motor speed implemented on a real DC motor and microcontroller system in the L-R method had an error of 3.98%, while the result of the estimation of motor speed in the R method had an error of 4.87%.
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