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Real-Time Performance of Mechatronic PZT Module Using Active Vibration Feedback Control

机译:主动振动反馈控制的机电一体化PZT模块的实时性能

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摘要

This paper proposes an innovative mechatronic piezo-actuated module to control vibrations in modern machine tools. Vibrations represent one of the main issues that seriously compromise the quality of the workpiece. The active vibration control (AVC) device is composed of a host part integrated with sensors and actuators synchronized by a regulator; it is able to make a self-assessment and adjust to alterations in the environment. In particular, an innovative smart actuator has been designed and developed to satisfy machining requirements during active vibration control. This study presents the mechatronic model based on the kinematic and dynamic analysis of the AVC device. To ensure a real time performance, a H2-LQG controller has been developed and validated by simulations involving a machine tool, PZT actuator and controller models. The Hardware in the Loop (HIL) architecture is adopted to control and attenuate the vibrations. A set of experimental tests has been performed to validate the AVC module on a commercial machine tool. The feasibility of the real time vibration damping is demonstrated and the simulation accuracy is evaluated.
机译:本文提出了一种创新的机电压电驱动模块,以控制现代机床中的振动。振动是严重损害工件质量的主要问题之一。主动振动控制(AVC)设备由主机部分组成,该主机部分与传感器和通过调节器同步的执行器集成在一起;它能够进行自我评估并适应环境的变化。特别是,已经设计和开发了一种创新的智能执行器,以满足主动振动控制期间的加工要求。这项研究提出了基于AVC设备运动学和动态分析的机电一体化模型。为了确保实时性能,已经开发并通过涉及机床,PZT执行器和控制器模型的仿真对H2-LQG控制器进行了开发和验证。采用硬件在环(HIL)架构来控制和减弱振动。已经执行了一组实验测试以验证商用机床上的AVC模块。演示了实时减振的可行性,并评估了仿真精度。

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