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Suppression of nonlinear regenerative chatter in milling process via robust optimal control

机译:鲁棒最优控制抑制铣削过程中的非线性再生颤动

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摘要

During the milling process, self-excited vibration or chatter adversely affects tool life, surface quality and productivity rate. In this paper, nonlinear cutting forces of milling process are considered as a function of chip thickness with a complete third order polynomial (instead of the common linear dependency). An optimal control strategy is developed for chatter suppression of the system described through nonlinear delay differential equations. Counterbalance forces exerted by actuators in x and y directions are the control inputs. For optimal control problem, an appropriate performance index is defined such that the regenerative chatter is suppressed while control efforts are minimized. Optimal control law is determined based on variation of extremals algorithm. Results show that under unstable machining conditions, regenerative chatter is suppressed effectively after applying the optimal control strategy. In addition, optimal controller guarantees robust performance of the process in the presence of model parametric uncertainties.
机译:在铣削过程中,自激振动或颤动会对刀具寿命,表面质量和生产率产生不利影响。在本文中,铣削过程的非线性切削力被认为是具有完整三阶多项式(而不是常见的线性相关性)的切屑厚度的函数。针对非线性延迟微分方程描述的系统颤振抑制,提出了一种最优控制策略。执行器在x和y方向上施加的平衡力是控制输入。对于最佳控制问题,定义了适当的性能指标,以便在最小化控制工作的同时抑制再生颤动。根据极值算法的变化确定最优控制律。结果表明,在不稳定的加工条件下,采用最优控制策略可以有效地抑制再生颤动。此外,在存在模型参数不确定性的情况下,最佳控制器可确保过程的鲁棒性能。

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