基于扫源光学相干多点振动仪的旋转轴中心轨迹监测方法

Q4 Physics and Astronomy 光学应用 Pub Date : 2023-01-01 DOI:10.5768/jao202344.0503006
FU Xibin, LIN Jiewen, ZHONG Jianfeng, XU Huoli, LIU Dongming, CHI Shoujiang, ZHANG Qiukun, ZHONG Shuncong, WANG Dong, ZHANG Yan
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引用次数: 0

摘要

结合频分复用技术与扫频光学相干测振仪,提出一种基于光学相干多点测振仪(swept-source optical coherence multi-point vibrometer, SSOCMV)的转轴轴心轨迹监测方法和系统,其具有非接触式、非侵入式、高精度以及多点振动同步测量的优点。首先,对SSOCMV的系统组成和测量原理进行了介绍与分析;其次,搭建实验对比系统以验证SSOCMV系统的测量准确性,在SSOCMV系统探头的对称位置安装电涡流传感器以同步监测转轴轴心轨迹,便于对比两个系统的测量结果。实验结果表明,基于光学相干多点测振仪的转轴轴心轨迹监系统比电涡流传感器具有更高的位移分辨率和更好的信噪比。因此,SSOCMV系统在旋转机械状态监测、参数识别和故障诊断等方面具有良好的应用前景。
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Trajectory monitoring method of rotation shaft center based on swept-source optical coherence multi-point vibrometer
结合频分复用技术与扫频光学相干测振仪,提出一种基于光学相干多点测振仪(swept-source optical coherence multi-point vibrometer, SSOCMV)的转轴轴心轨迹监测方法和系统,其具有非接触式、非侵入式、高精度以及多点振动同步测量的优点。首先,对SSOCMV的系统组成和测量原理进行了介绍与分析;其次,搭建实验对比系统以验证SSOCMV系统的测量准确性,在SSOCMV系统探头的对称位置安装电涡流传感器以同步监测转轴轴心轨迹,便于对比两个系统的测量结果。实验结果表明,基于光学相干多点测振仪的转轴轴心轨迹监系统比电涡流传感器具有更高的位移分辨率和更好的信噪比。因此,SSOCMV系统在旋转机械状态监测、参数识别和故障诊断等方面具有良好的应用前景。
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来源期刊
光学应用
光学应用 Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
1.00
自引率
0.00%
发文量
5894
期刊介绍: Journal of Applied Optics was founded in 1980, and its domestic and international publication numbers are ISSN 1002-2082 and CN-61-1171/O4. The journal is a technical journal sponsored by the China Ordnance Society and the 205th Institute of China Ordnance Industry. It was included in the "China Science and Technology Core Journal" in April 2006 and in the "Chinese Core Journal" in December 2008. It is included in the journals of important international retrieval institutions such as the American Chemical Abstracts (CA), Cambridge Scientific Abstracts (CSA), Russian Abstracts Journal (AJ), British Scientific Abstracts (INSPEC), Ulrich's Periodical Directory (UIPD), and Polish Index Copernicus (IC). The purpose of the journal is to track the research trends of high-tech at home and abroad, and comprehensively reflect the development status, research level, and application of optoelectronic technology at home and abroad; focus on optoelectronic application technology, advocate scientific research, be close to readers, and be close to enterprises, and focus on reporting new theories, new technologies and new methods, new products, and development trends in the field of optoelectronic technology at home and abroad. This journal solicits research papers on engineering optics, optical information acquisition and processing, optical metrology and detection, low-light-level night vision technology, fiber optic sensing technology, infrared application technology, laser application technology, optoelectronic devices, thin film optics, optical processes and equipment, and displays.
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