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Robust control of regenerative chatter in uncertain milling process with weak nonlinear cutting forces: A comparison with linear model

机译:非线性铣削力较弱的不确定铣削过程中再生颤振的鲁棒控制:与线性模型的比较

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For various types of materials, milling process is extensively used to generate complex shapes with high quality. During the process and to achieve high removal rate, precision and better surface finish, chatter suppression is of great importance. An extended model of the milling process is presented in which the cutting forces are described as a third-order nonlinear function of chip thickness. Uncertainties associated with the process and tool parameters are also included to achieve a more realistic model. To suppress regenerative chatter, an H∞robust control is designed based on μ-synthesis with DK-iteration algorithm. The controller guarantees the robust stability and performance of both linear and nonlinear models in the presence of uncertainties. In both models, as the amount of uncertainty increases, more actuator efforts are required to suppress the chatter. The linear model needs less actuation and time to suppress the chatter. However, as the nonlinear effects are increased, the controller must be re-designed.
机译:对于各种类型的材料,铣削工艺被广泛用于生成高质量的复杂形状。在此过程中,为了达到较高的去除率,精度和更好的表面光洁度,抑制颤动非常重要。提出了铣削过程的扩展模型,其中切削力被描述为切屑厚度的三阶非线性函数。还包括与过程和工具参数相关的不确定性,以实现更实际的模型。为了抑制再生颤动,基于μ合成的DK迭代算法设计了一种H∞鲁棒控制。在存在不确定性的情况下,控制器可确保线性和非线性模型的鲁棒稳定性和性能。在这两种模型中,随着不确定性量的增加,需要更多的致动器努力来抑制颤动。线性模型需要较少的驱动力和时间来抑制颤动。但是,随着非线性效应的增加,必须重新设计控制器。

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