基于偏振干涉测量法同时测量滚动和俯仰角位移

IF 5.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Measurement Pub Date : 2024-11-19 DOI:10.1016/j.measurement.2024.116270
Ju-Yi Lee, Shu-Han Chang, Wun-Yan Chen
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引用次数: 0

摘要

本文介绍了一种利用双光束偏振干涉仪同时测量滚动和俯仰角位移的创新方法。由于双折射晶体的滚动和俯仰角位移,入射到双折射晶体上的双光束会引起相位差变化。利用偏振干涉仪和相位分析技术,该系统可以测量相位差变化,从而确定滚动和俯仰角位移。这种方法将现有干涉仪有限的测量范围扩大到几度。经过不确定性评估,拟议系统的滚动角和俯仰角分辨率分别达到了 2.5 弧秒和 21.6 弧秒。本文还讨论了非线性周期误差和系统灵敏度的问题。
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Simultaneous measurement of roll and pitch angular displacements based on polarization interferometry
The paper presents an innovative approach for measuring roll and pitch angular displacements simultaneously by using dual-beam polarization interferometer. Dual beams incident on the birefringent crystal induce phase differences variation due to the birefringent crystal’s roll and pitch angular displacements. Developing a polarization interferometer and phase analysis techniques, this system can measure the phase differences variation to determine the roll and pitch angular displacements. This approach extends the limited measurement range of existing interferometers to several degrees. Following uncertainty evaluation, the proposed system achieved a roll angle and pitch angle resolution of 2.5 arcsec and 21.6 arcsec, respectively. This paper also discusses the issue of nonlinear periodic error and the system’s sensitivity.
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来源期刊
Measurement
Measurement 工程技术-工程:综合
CiteScore
10.20
自引率
12.50%
发文量
1589
审稿时长
12.1 months
期刊介绍: Contributions are invited on novel achievements in all fields of measurement and instrumentation science and technology. Authors are encouraged to submit novel material, whose ultimate goal is an advancement in the state of the art of: measurement and metrology fundamentals, sensors, measurement instruments, measurement and estimation techniques, measurement data processing and fusion algorithms, evaluation procedures and methodologies for plants and industrial processes, performance analysis of systems, processes and algorithms, mathematical models for measurement-oriented purposes, distributed measurement systems in a connected world.
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