DEEP LEARNING-BASED DIGITAL HOLOGRAPHIC CONTINUOUS PHASE NOISE REDUCTION METHOD FOR MICROSTRUCTURE MEASUREMENT
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Issued Date -
Oct 31, 2024
app pub date -
Mar 7, 2024
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Mar 7, 2024
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Abstract
A deep learning-based digital holographic continuous phase noise reduction method for microstructure measurement is provided. A MEMS microstructure is simulated to generate an object phase image through generation of random matrix superposition, noise in a digital holographic continuous phase map is simultaneously simulated to generate a noise grayscale image, and a simulation data set is thus created. An end-to-end convolutional neural network is designed, and a trained convolutional neural network is trained and obtained. A holographic interference pattern of an object under measurement is collected by photographing, and after spectrum extraction, angular spectrum diffraction, phase unwrapping, and distortion compensation, a continuous phase map containing only the object phase and noise is obtained and input into the trained convolutional neural network to obtain an object phase map. A simulation data set is accurately created in the disclosure, thereby the difficulty of collecting a large amount of experimental data is avoided.

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Patent Owner(s)
Patent Owner | Address | |
---|---|---|
ZHEJIANG SCI-TECH UNIVERSITY | 310018 NO 2 STREET BAIYANG STREET XIASHA HIGHER EDUCATION PARK HANGZHOU ZHEJIANG CHINA 928 HANGZHOU CITY ZHEJIANG PROVINCE 310018 |
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Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
---|---|---|---|
CHEN, Benyong | Zhejiang, CN | 13 | 28 |
HUANG, Liu | Zhejiang, CN | 19 | 203 |
TANG, Jianjun | Zhejiang, CN | 2 | 0 |
YAN, Liping | Zhejiang, CN | 17 | 28 |
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