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Liquid lens based holographic camera for real 3D scene hologram acquisition using end-to-end physical model-driven networkOA北大核心CSTPCD

Liquid lens based holographic camera for real 3D scene hologram acquisition using end-to-end physical model-driven network

英文摘要

With the development of artificial intelligence,neural network provides unique opportunities for holography,such as high fidelity and dynamic calculation.How to obtain real 3D scene and generate high fidelity hologram in real time is an urgent problem.Here,we propose a liquid lens based holographic camera for real 3D scene hologram acquisition using an end-to-end physical model-driven network(EEPMD-Net).As the core component of the liquid camera,the first 10 mm large aperture electrowetting-based liquid lens is proposed by using specially fabricated solution.The design of the liquid camera ensures that the multi-layers of the real 3D scene can be obtained quickly and with great imaging performance.The EEPMD-Net takes the information of real 3D scene as the input,and uses two new structures of encoder and decoder networks to realize low-noise phase generation.By comparing the intensity information between the reconstructed image after depth fusion and the target scene,the composite loss function is constructed for phase optimization,and the high-fidelity training of hologram with true depth of the 3D scene is realized for the first time.The holographic camera achieves the high-fidelity and fast generation of the hologram of the real 3D scene,and the reconstructed experiment proves that the holographic image has the advantage of low noise.The proposed holographic camera is unique and can be used in 3D display,measurement,encryption and other fields.

Di Wang;Da-Wei Zhang;Song-Lin Zhuang;Qiong-Hua Wang;Zhao-Song Li;Yi Zheng;You-Ran Zhao;Chao Liu;Jin-Bo Xu;Yi-Wei Zheng;Qian Huang;Chen-Liang Chang

School of Instrumentation and Optoelectronic Engineering,Beihang University,Beijing 100191,ChinaSchool of Optical-Electrical and Computer Engineering,University of Shanghai for Science and Technology,Shanghai 200093,China

《光:科学与应用(英文版)》 2024 (003)

面向目标监视的复眼阵列相机智能探测感知技术研究

488-497 / 10

This work is supported by the National Key Research and Development Program of China(2021YFB2802100)and the National Natural Science Foundation of China(62020106010,62275009,U22A2079,and U21B2034).

10.1038/s41377-024-01410-8

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