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Sensor less control of DC motor using Kalman filter for low cost CNC machine

机译:低成本数控机床使用卡尔曼滤波器的直流电机无传感器控制

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DC motor is a common component used in automated systems, almost in every industry. In this paper, the focus is on the machine tool and precision system control design as DC motors are used as prime movers for all the stages. Sophisticated CNC machine tools use high end closed or open architecture control and sensors to run complex CAM routines. Linear or rotary encoders and glass scales are commonly used for rate sensing as a feedback system in CNC machine tools. The intelligent control design is necessary to operate these flexible CNC machine tool systems to achieve high accuracies. To make such systems in low cost, it is necessary to build machine tool system with reduced number of sensors. In this paper, an intelligent speed control of DC motor in a sensor less environment is followed in order to avoid costly hardware. This is a stochastic estimation method for estimating DC motor angular rate and current without using any rate sensors in the closed loop feedback. In this simple and cost effective approach, we have used Kalman Filter (KF) for the speed control of DC motor where it is applied to stochastic time varying system. KF is found robust against external disturbances and has the ability to predict such states and parameters which are even not easy to measure through deployed sensors. The employed scheme uses the state estimation technique by analyzing the currents in the windings and re-constructs the states. This way, the machine tool can get high accuracies using low cost control alternative.
机译:直流电动机是几乎在每个行业中用于自动化系统的通用组件。本文将重点放在机床和精密系统控制设计上,因为直流电动机被用作所有阶段的原动机。精密的CNC机床使用高端的封闭式或开放式结构控制和传感器来运行复杂的CAM例程。线性或旋转编码器和玻璃光栅尺通常用于速率传感,作为CNC机床的反馈系统。智能控制设计是操作这些灵活的CNC机床系统以实现高精度的必要条件。为了以低成本制造这样的系统,必须建立具有减少的传感器数量的机床系统。在本文中,为了避免昂贵的硬件,遵循了在无传感器的环境中对直流电动机的智能速度控制。这是一种随机估计方法,用于在闭环反馈中不使用任何速率传感器的情况下估计直流电动机角速度和电流。通过这种简单且经济高效的方法,我们将卡尔曼滤波器(KF)用于直流电动机的速度控制,并将其应用于随机时变系统。发现KF具有强大的抵抗外部干扰的能力,并且能够预测这样的状态和参数,即使通过部署的传感器也不容易测量这些状态和参数。所采用的方案通过分析绕组中的电流来使用状态估计技术,并重建状态。这样,机床可以使用低成本的控制替代方案获得较高的精度。

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