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Active chatter control in high speed milling processes based on H almost disturbance decoupling problem

机译:基于H 几乎扰动解耦问题的高速铣削过程中的主动颤动控制

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摘要

High speed milling is commonly used to improve the cutting efficiency. However, chatter is still an obstacle limiting the performance of high speed milling. In this work, an active chatter control strategy is proposed based on H∞almost disturbance decoupling problem. Firstly, a cutting force model is introduced to simulate the milling force under given milling conditions. Then, the cutting force model is coupled with transfer functions of the original system to simulate the whole milling process and the regenerative chatter. Next, the controller is calculated based on H∞almost disturbance decoupling problem and the closed-loop bode diagram is compared with the open-loop bode diagram. Finally, the vibration responses with and without control are compared and the effect of controller parameter adjustment is presented.
机译:高速铣削通常用于提高切削效率。但是,颤振仍然是限制高速铣削性能的障碍。在这项工作中,提出了一种基于H∞几乎扰动解耦问题的主动颤振控制策略。首先,引入切削力模型来模拟给定铣削条件下的铣削力。然后,将切削力模型与原始系统的传递函数耦合,以模拟整个铣削过程和再生颤动。接下来,基于H∞几乎扰动解耦问题计算控制器,并将闭环波德图与开环波德图进行比较。最后,比较了有控制和无控制时的振动响应,并给出了控制器参数调整的效果。

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