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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Inverse dynamics toolpath compensation for CNC machines based on model predictive control
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Inverse dynamics toolpath compensation for CNC machines based on model predictive control

机译:基于模型预测控制的CNC机器逆动力学刀具路径补偿

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摘要

The use of model predictive control (MPC) as a form of inverse dynamics compensation for multi-axis CNC machines, to subdue the inaccuracies incurred by axis inertia and damping, is investigated by both simulation studies and experimental performance analysis using a 3-axis milling machine governed by an open-architecture software controller. The results indicate that MPC is a viable tool for inverse dynamics compensation with a controller sampling frequencyf= 1024 Hz running on a 500-MHz processor, with only modest prediction horizons offering excellent performance in terms of feedrate accuracy and contour error suppression. Unlike inverse dynamics schemes based upon linear time-invariant dynamic models, the MPC scheme provides the flexibility to compensate for nonlinear physical effects such as backlash in the machine axes and hard constraints on axis accelerations imposed by motor torque constraint.
机译:使用模型预测控制(MPC)作为多轴CNC机器的逆动力学补偿的形式,通过使用3轴研磨的两种模拟研究和实验性能分析来研究轴惯性和阻尼所产生的不准确性的形式 机器由开放式架构软件控制器管理。 结果表明,MPC是一种可行的工具,用于使用在500 MHz处理器上运行的控制器采样频率F = 1024Hz的反向动力学补偿,仅具有适度的预测视野,在进给准确度和轮廓误差抑制方面提供出色的性能。 与基于线性时间不变动态模型的逆动力学方案不同,MPC方案提供了可灵活地补偿机器轴中的非线性物理效果,例如由电动机扭矩约束施加的轴加速度的轴加速度。

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