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On the stability analysis and modelling of a multirate control direct-drive machine tool axis subject to large changes in load dynamics

机译:负载动态变化较大的多速率控制直接驱动机床轴的稳定性分析和建模

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摘要

The high performance demands on commercial CNC machine tools have led to the widespread adoption of direct-drive servo axes. In cases where the workpiece is manipulated by the axis, the plant dynamics seen by the control system may vary widely between different workpieces. In practice it is often found that an axis which has been optimally tuned for a given workpiece becomes unstable when a new workpiece with significantly different geometry is loaded. This paper analyses such a situation. It is shown that conventional modelling approaches, in which the low-order vibrational modes of the axis are represented, but in which details of the current servo are neglected, are unable to predict the experimentally observed limit-cycles. Accurate prediction of these phenomena are obtained by a combination of modal analysis for the mechanical dynamics, and a single-rate representation of the multirate control system, which takes account of computational delays and the current servo dynamics.
机译:对商用数控机床的高性能要求已导致直接驱动伺服轴的广泛采用。在通过轴操纵工件的情况下,控制系统所看到的工厂动态可能会在不同的工件之间变化很大。在实践中,通常会发现,当加载具有明显不同几何形状的新工件时,针对给定工件进行了优化调整的轴变得不稳定。本文分析了这种情况。结果表明,传统的建模方法无法预测实验观察到的极限循环,在传统的建模方法中,代表了轴的低阶振动模式,而忽略了当前伺服系统的细节。这些现象的准确预测是通过对机械动力学的模态分析和多速率控制系统的单速率表示相结合而获得的,该速率考虑了计算延迟和当前的伺服动力学。

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