面向纳米分辨率定位系统的表面声波电机步进运动分析

T. Shigematsu, M.K. Kuroswa, K. Asai
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引用次数: 5

摘要

建立了表面声波(SAW)电机在100纳米范围内步进运动的力学模型。SAW电机的活动部分采用柔度结构,利用SAW的纳米振动进行摩擦驱动。然而,柔度导致了可动部件的两自由度振动行为。在力学模型的基础上,通过FFT分析和实验数据的衰减拟合对系统进行了辨识。用所识别的模型进行的仿真定性地表示了实验结果。为了更精确的模拟,额外的非线性效应应该隐含在模型中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stepping motion analysis of surface acoustic wave motor toward nanometer resolution positioning system
A mechanical model of a surface acoustic wave (SAW) motor's stepping motions ranging under 100 nanometers was constructed. The SAW motor had a compliance structure in its movable part to utilize nanometer vibration of SAW for friction drive. The compliance, however, resulted in the two-degree-of-freedom vibration behavior of the movable part. Based on the mechanical model, the system identification was carried out by means of FFT analyses and decay fittings to experimental data. The simulation with the identified model qualitatively represented the experimental results. For more accurate simulations, additional nonlinear effects should be implied to the model.
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