Friction compensation of a retrofit milling machine through a fuzzy logic controller combined with neural network-based feedforward control

M. Yan, Y. Huang, A. Hsue
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引用次数: 3

Abstract

Conventional milling machine contained nonlinear time-varying dynamics because of the effect of irregular friction and obvious backlash inherited in the ball-screw driven table. In this paper, a fuzzy logic controller combined with neural network-based (NN) feedforward control was proposed to improve the contouring accuracy of this milling machine through friction compensation. Experiments on contouring control were conducted for various paths under milling force. The experimental results showed that this control scheme improved not only the contouring accuracy significantly, but also the disturbance rejection and robustness, comparing to the conventional control scheme.
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采用模糊控制器与神经网络前馈控制相结合的方法对某改进型铣床进行摩擦补偿
由于滚珠丝杠从动台上继承了不规则摩擦和明显间隙的影响,传统铣床具有非线性时变动力学。本文提出了一种模糊控制器与神经网络前馈控制相结合的方法,通过摩擦补偿来提高铣床的成形精度。在铣削力作用下,对不同路径进行了成形控制实验。实验结果表明,与传统控制方案相比,该控制方案不仅显著提高了轮廓精度,而且具有抗扰性和鲁棒性。
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