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A New Method for Sensorless Estimation of the Speed and Position in Brushed DC Motors Using Support Vector Machines

机译:支持向量机的无刷直流电动机速度和位置无传感器估计新方法

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摘要

Currently, for many applications, it is necessary to know the speed and position of motors. This can be achieved using mechanical sensors coupled to the motor shaft or using sensorless techniques. The sensorless techniques in brushed dc motors can be classified into two types: 1) techniques based on the dynamic brushed dc motor model and 2) techniques based on the ripple component of the current. This paper presents a new method, based on the ripple component, for speed and position estimation in brushed dc motors, using support vector machines. The proposed method only measures the current and detects the pulses in this signal. The motor speed is estimated by using the inverse distance between the detected pulses, and the position is estimated by counting all detected pulses. The ability to detect ghost pulses and to discard false pulses is the main advantage of this method over other sensorless methods. The performed tests on two fractional horsepower brushed dc motors indicate that the method works correctly in a wide range of speeds and situations, in which the speed is constant or varies dynamically.
机译:当前,对于许多应用,有必要知道电动机的速度和位置。这可以通过使用与电动机轴相连的机械传感器或使用无传感器技术来实现。有刷直流电动机中的无传感器技术可分为两种类型:1)基于动态有刷直流电动机模型的技术,以及2)基于电流纹波分量的技术。本文提出了一种基于纹波分量的,使用支持向量机的有刷直流电动机速度和位置估计的新方法。所提出的方法仅测量电流并检测该信号中的脉冲。通过使用检测到的脉冲之间的反距离来估算电动机速度,并通过计数所有检测到的脉冲来估算位置。与其他无传感器方法相比,此方法的主要优点是能够检测幻像脉冲并丢弃假脉冲。在两个分数马力有刷直流电动机上进行的测试表明,该方法在速度恒定或动态变化的各种速度和情况下均可正常运行。

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