用H/sub /spl // /技术控制加工振动

M. A. Marra, B. Walcott, K. Rouch, S. G. Tewani
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引用次数: 2

摘要

为了使系统对未知干扰的响应最小化,设计了一种鲁棒控制。该方法包括在线辨识系统的状态空间方程,并结合H/sub /spl优化控制器设计。设计了H/sub /spl infin//控制器,使系统闭环传递函数的最大值小于/spl gamma/,其中/spl gamma/为正设计变量,作为闭环系统H/sub /spl infin//范数的上界。该鲁棒控制器通过主动动态吸收器消除镗杆切削过程中的振动,镗杆是一种具有大悬垂(长径比)的金属切削工具。由于这种大的悬垂,典型的镗杆具有低动态刚度的特点,因此在切削过程中容易受到过度振动的影响。这些振动经常导致切削不稳定,称为机床颤振。本文研究了主动动力减振器对镗杆振动的控制。通过在不调整计算控制参数的情况下改变系统的动态特性(即改变镗杆的长径比),证明了H/sub /spl最优控制器的鲁棒性。将H/sub /spl in//情况下的结果与线性二次型调节器控制设计的类似结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration control for machining using H/sub /spl infin// techniques
A robust control design is developed to minimize a system's response to unknown disturbances. The method consists of on-line identification of the system's state space equations coupled with an H/sub /spl infin//-optimal controller design. The H/sub /spl infin// controller is designed such that the maximum of the system's closed-loop transfer function is less than /spl gamma/, where /spl gamma/ is a positive design variable chosen as the upper bound on the H/sub /spl infin// norm of the closed-loop system. This robust controller is used to eliminate vibrations in cutting operations of a boring bar with an active dynamic absorber, a boring bar is a metal cutting tool with a large overhang (length-to-diameter ratio). Due to this large overhang, a typical boring bar is characterized by a low dynamic stiffness and is therefore susceptible to excessive vibrations during the cutting process. These vibrations often lead to cutting instability, known as machine tool chatter. In this paper, the control of vibrations of a boring bar with an active dynamic absorber is studied. The robustness of the H/sub /spl infin//-optimal controller is demonstrated by varying the system's dynamic characteristics (i.e, changing the length-to-diameter ratio of the boring bar) without adjusting the calculated control parameters. The results obtained for the H/sub /spl infin// case are compared to similar results for linear quadratic regulator control design.
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