Trajectory tracking and vibration control in a space frame flexible structure with a PZT stack actuator

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
O. A. Garcia-Perez, G. Silva‐Navarro, J. F. Peza-Solís, L. G. Trujillo-Franco
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引用次数: 1

Abstract

This work deals with the robust asymptotic output tracking control problem of the tip position of a space frame flexible structure, mounted on a rigid revolute servomechanism actuated and controlled with a dc motor. The structure is also affected by undesirable vibrations due to excitation of its first lateral vibration modes and possible variations of the tip mass. The overall flexible structure is modeled by using finite element methods and this is validated via experimental modal analysis techniques. The tip position of the structure is estimated from acceleration and strain gauge measurements. The asymptotic output tracking problem is formulated and solved by means of Passivity-Based and Sliding-Mode Control techniques, applied to the dc motor coupled to the rigid part of the structure, and those undesirable vibrations are simultaneously attenuated by an active vibration control using Positive Position Feedback control schemes implemented on a PZT stack actuator properly located into the mechanical structure. The investigation also addresses the trajectory tracking problem of fast motions, with harmonic excitations close to the first vibration modes of the structure. The overall dynamic performance is evaluated and validated by numerical and experimental results.
基于PZT堆叠作动器的空间框架柔性结构的轨迹跟踪与振动控制
本文研究了由直流电动机驱动和控制的刚性旋转伺服机构上的空间框架柔性结构尖端位置的鲁棒渐近输出跟踪控制问题。由于其第一横向振动模式的激发和尖端质量的可能变化,结构也受到不良振动的影响。采用有限元方法对整体柔性结构进行了建模,并通过试验模态分析技术进行了验证。结构的尖端位置是通过加速度和应变测量来估计的。采用基于无源性和滑模控制技术,对与结构刚性部分耦合的直流电动机建立并解决了渐近输出跟踪问题,同时,在适当放置在机械结构中的PZT堆叠执行器上采用正位置反馈控制方案进行主动振动控制,从而减弱了这些不良振动。研究还解决了快速运动的轨迹跟踪问题,谐波激励接近结构的第一振动模态。通过数值和实验结果对整体动态性能进行了评价和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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