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Piezoelectric self-sensing actuator for active vibration control of motorized spindle based on adaptive signal separation

机译:基于自适应信号分离的电动主轴主动振动控制压电自感振动控制

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摘要

The motorized spindle is the core component of CNC machine tools, and the vibration of it reduces the machining precision and service life of the machine tools. Owing to the fast response, large output force, and displacement of the piezoelectric stack, it is often used as the actuator in the active vibration control of the spindle. A piezoelectric self-sensing actuator (SSA) can reduce the cost of the active vibration control system and simplify the structure by eliminating the use of a sensor, because a SSA can have both actuating and sensing functions at the same time. The signal separation method of a SSA based on a bridge circuit is widely applied because of its simple principle and easy implementation. However, it is difficult to maintain dynamic balance of the circuit. Prior research has used adaptive algorithm to balance of the bridge circuit on the flexible beam dynamically, but those algorithms need no correlation between sensing and control voltage, which limit the applications of SSA in the vibration control of the rotor-bearing system. Here, the electromechanical coupling model of the piezoelectric stack is established, followed by establishment of the dynamic model of the spindle system. Next, a new adaptive signal separation method based on the bridge circuit is proposed, which can separate relative small sensing voltage from related mixed voltage adaptively. The experimental results show that when the self-sensing signal obtained from the proposed method is used as a displacement signal, the vibration of the motorized spindle can be suppressed effectively through a linear quadratic Gaussian (LQG) algorithm.
机译:电动主轴是CNC机床的核心组件,而IT的振动减少了机床的加工精度和使用寿命。由于响应,大输出力和压电堆的置换力和位移,通常用作主轴的主动振动控制中的致动器。压电自感致动器(SSA)可以降低主动振动控制系统的成本,并通过消除传感器来简化结构,因为SSA可以同时具有致动和感测功能。基于桥接电路的SSA信号分离方法被广泛应用,因为其原理简单和简单的实现。但是,难以保持电路的动态平衡。现有研究使用自适应算法动态地对柔性束上的桥接电路的平衡,但是这些算法不需要感测和控制电压之间的相关性,这限制了SSA在转子轴承系统的振动控制中的应用。这里,建立压电堆的机电耦合模型,然后建立主轴系统的动态模型。接下来,提出了一种基于桥接电路的新的自适应信号分离方法,其可以自适应地将相关的混合电压与相关混合电压分离。实验结果表明,当从所提出的方法获得的自感应信号用作位移信号时,通过线性二次高斯(LQG)算法可以有效地抑制电动主轴的振动。

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