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Real-time micro-vibration multi-spot synchronous measurement within a region based on heterodyne interference

  • Beihang University

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Real-time micro-vibration measurement is widely used in engineering applications. It is very difficult for traditional optical detection methods to achieve real-time need in a relatively high frequency and multi-spot synchronous measurement of a region at the same time,especially at the nanoscale. Based on the method of heterodyne interference, an experimental system of real-time measurement of micro - vibration is constructed to satisfy the demand in engineering applications. The vibration response signal is measured by combing optical heterodyne interferometry and a high-speed CMOS-DVR image acquisition system. Then, by extracting and processing multiple pixels at the same time, four digital demodulation technique are implemented to simultaneously acquire the vibrating velocity of the target from the recorded sequences of images. Different kinds of demodulation algorithms are analyzed and the results show that these four demodulation algorithms are suitable for different interference signals. Both autocorrelation algorithm and cross-correlation algorithm meet the needs of real-time measurements. The autocorrelation algorithm demodulates the frequency more accurately, while the cross-correlation algorithm is more accurate in solving the amplitude.

源语言英语
主期刊名2017 International Conference on Optical Instruments and Technology
主期刊副标题Optoelectronic Measurement Technology and Systems
编辑Kexin Xu, Hai Xiao, Jigui Zhu, Hwa-Yaw Tam
出版商SPIE
ISBN(电子版)9781510617537
DOI
出版状态已出版 - 2018
活动2017 International Conference on Optical Instruments and Technology: Optoelectronic Measurement Technology and Systems - Beijing, 中国
期限: 28 10月 201730 10月 2017

出版系列

姓名Proceedings of SPIE - The International Society for Optical Engineering
10621
ISSN(印刷版)0277-786X
ISSN(电子版)1996-756X

会议

会议2017 International Conference on Optical Instruments and Technology: Optoelectronic Measurement Technology and Systems
国家/地区中国
Beijing
时期28/10/1730/10/17

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