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Spatially weighted fiber-optic sensors for vibration modal filters.

机译:用于振动模态滤波器的空间加权光纤传感器。

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摘要

This dissertation attempts to develop fiber-optic vibration modal filters, which can retain specific vibration mode(s) information for the applications involving structural vibration control. We began the research with a fundamental analysis to carefully examine the theoretical basis of these kinds of fiber-optic sensors. During this examination, we found that except for the clamped-clamped beam case, it is very difficult to retain a specific vibration mode information and filter all unwanted vibration mode information for beam-like structures by using the classic approach of designing a dual-mode fiber-optic sensor such that the second derivative of the propagation constant difference (Deltabeta) is proportional to the specific mode shape. A deeper examination of fiber-optic sensors applied to cantilever beam structures resulted in three discoveries. The first discovery is that in addition to modifying the core geometry, a variable propagation constant profile along the fiber length can be created by modifying the refractive index of the core using the photorefractive effect. The second discovery is that vibration modal filters can be designed using approaches different from the commonly used approach of modifying the second derivative of the propagation constant difference (Deltabeta) to be proportional to the specific mode shape. The third discovery is that, except for the clamped-clamped beam case, a pure fiber-optic vibration modal filter can only be obtained by using two colocated optical fiber sensors.;After a careful analysis based on the perturbation theory, the polarimetric and dual-mode sensor configurations using elliptical core fibers were deemed most promising for vibration modal filters. It was found in this analysis that by changing the E-core geometry, the dual-mode sensor gives a larger range of variable propagation constant difference than the polarimetric sensor does. Alternatively, the analysis showed that by changing the refractive index of the core, the polarimetric sensor gives a larger range of variable propagation constant difference than the dual-mode sensor does. (Abstract shortened by UMI.).
机译:本文尝试开发光纤振动模态滤波器,该滤波器可以保留特定的振动模式信息,以用于涉及结构振动控制的应用。我们从基础分析开始研究,以仔细检查这些光纤传感器的理论基础。在此检查过程中,我们发现,除了采用夹钳式横梁的情况外,通过使用经典的双模设计方法很难保留特定的振动模式信息并过滤梁状结构的所有有害振动模式信息。光纤传感器,以使传播常数差(Deltabeta)的二阶导数与特定的模式形状成比例。对应用于悬臂梁结构的光纤传感器进行了更深入的检查,结果得出了三个发现。第一个发现是,除了修改纤芯的几何形状外,还可以通过使用光折射效应修改纤芯的折射率来创建沿纤维长度的可变传播常数轮廓。第二个发现是,可以使用不同于将传播常数差(Deltabeta)的二阶导数修改为与特定模式形状成比例的常用方法的方法来设计振动模式滤波器。第三个发现是,除了夹模梁的情况外,纯光纤振动模态滤波器只能通过使用两个并置的光纤传感器来获得。在基于扰动理论仔细分析后,偏振和双使用椭圆形芯纤维的低模传感器配置被认为是最有希望的振动模态滤波器。在此分析中发现,与极化传感器相比,通过更改E型磁芯的几何形状,双模传感器可提供更大范围的可变传播常数差。另外,分析表明,与双模传感器相比,极化传感器通过改变纤芯的折射率,可以提供更大范围的可变传播常数差。 (摘要由UMI缩短。)。

著录项

  • 作者

    Li, Yaowen.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Mechanical engineering.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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