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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >High accuracy motion control of linear motor drive wire-EDM machines
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High accuracy motion control of linear motor drive wire-EDM machines

机译:直线电机驱动线式电火花线切割机的高精度运动控制

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摘要

This paper aims to develop and investigate a permanent magnet linear-motor-driven table system for a wire-EDM machine. A dynamic model and system identification of the linear motor system have been derived and analyzed. The linear motor drive system has nonlinear and time-varying behaviors because of the effect of irregular friction of the sliding surface and cogging force. Therefore, a conventional digital controller may not suffice to provide a high contouring accuracy as well as adequate disturbance rejection and parameter variation robustness. An indirect adaptive controller (IAC), combined with a neural network-based feedforward controller (NNBFC) is proposed to improve the contouring performance of the linear motor system. Experimental results not only indicate that the proposed control scheme can achieve a high contouring accuracy of ± 0.3 μm, they also demonstrate that the developed linear motor drive wire-EDM machine can meet the requirement for micro machining. The maximum contour error of circular trajectory at a feed-rate of 0.1 mm/min was significantly reduced from 8 μm to 0.5 μm in comparison with proportional-integral-derivative (PID) controller.
机译:本文旨在开发和研究用于电火花线切割机的永磁直线电机驱动工作台系统。推导并分析了直线电机系统的动力学模型和系统辨识。由于滑动表面的不规则摩擦和齿槽力的影响,线性电动机驱动系统具有非线性和时变行为。因此,常规的数字控制器可能不足以提供高轮廓精度以及足够的干扰抑制和参数变化鲁棒性。提出了一种间接自适应控制器(IAC)结合基于神经网络的前馈控制器(NNBFC),以提高线性电动机系统的轮廓性能。实验结果不仅表明所提出的控制方案可以达到±0.3μm的高轮廓精度,而且还表明所开发的直线电机驱动线EDM机床可以满足微加工的要求。与比例积分微分(PID)控制器相比,进给速度为0.1 mm / min时,圆形轨迹的最大轮廓误差从8μm显着降低至0.5μm。

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