High Performance Open Loop Control of Scanning with a Small Cylindrical Cantilever Beam.

High Performance Open Loop Control of Scanning with a Small Cylindrical Cantilever Beam.
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使用小型圆柱形悬臂梁进行扫描的高性能开环控制。

DOI:
10.1016/j.jsv.2010.10.019
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发表时间:
2011
影响因子:
4.7
通讯作者:
Seibel,EricJ
Seibel,EricJ
中科院分区:
工程技术2区
文献类型:
--
作者:
Kundrat,MatthewJ;Reinhall,PerG;Lee,CameronM;Seibel,EricJ

文献摘要

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由单向位移激励的圆形截面基座激励悬臂梁的稳态响应运动将沿直线下降。然而,用真实的圆形截面悬臂梁实现直线运动是很难实现的。这是因为非线性效应、圆度的小偏差、不对称边界条件和执行器交叉耦合都会引起旋转。之前关于悬臂梁旋转的绝大多数工作都集中在系统非线性的影响上。我们表明,旋转是共振束扫描仪设计中一个更广泛的问题,因为旋转的开始并不依赖于大的运动幅度。相反,由于较小的系统不对称性和执行器交叉耦合,旋转在实际系统中是常态。因此,当需要单向梁运动时,有必要控制旋转运动的增长。我们开发了一种新技术来识别光束的两个特征方向。由虚拟电极沿着悬臂梁系统的这些正交特征轴产生的基础激励产生没有涡动的尖端振动。这导致通过两对正交放置的致动器电极的组合致动对梁的运动进行精确的开环控制。
The steady-state response motion of a base excited cantilever beam with circular cross-section excited by a unidirectional displacement will fall along a straight line. However, achieving straight-line motion with a real cantilever beam of circular cross-section is difficult to accomplish. This is due to the fact that nonlinear effects, small deviations from circularity, asymmetric boundary conditions, and actuator cross coupling can induce whirling. The vast majority of previous work on cantilever beam whirling has focused on the effects of system nonlinearities. We show that whirling is a much broader problem in the design of resonant beam scanners in that the onset of whirling does not depend on large amplitude of motion. Rather, whirling is the norm in real systems due to small system asymmetries and actuator cross coupling. It is therefore necessary to control the growth of the whirling motion when a unidirectional beam motion is desired. We have developed a novel technique to identify the two eigen directions of the beam. Base excitation generated by virtual electrodes along these orthogonal eigen axes of the cantilever beam system generates tip vibration without whirl. This leads to accurate open loop control of the motion of the beam through the combined actuation of two pairs of orthogonally placed actuator electrodes.