Contents
2023
Volume: 60 Issue 8
35 Article(s)

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Imaging Systems
High-Speed 3D Topography Measurement Based on Fringe Projection: A Review
Zhoujie Wu, and Qican Zhang
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811001 (2023)
Review of Sparse-View or Limited-Angle CT Reconstruction Based on Deep Learning
Jianglei Di, Juncheng Lin, Liyun Zhong, Kemao Qian, and Yuwen Qin
Computed tomography (CT) technology is widely used in clinical medical diagnosis thanks to the excellent visualization of the CT imaging technology for the internal cross-sectional structure of objects. Because X-ray radiation will be harmful to the human body, it is demanded to reduce the dose of X-ray radiation to pa
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811002 (2023)
Metasurface-Based Three-Dimensional Imaging Technique
Xiaoli Jing, Yongtian Wang, and Lingling Huang
Three-dimensional (3D) imaging enables the elaborate numerical description of the physical space, leading to one of the most critical technologies in consumer electronics, automatic drive, machine vision, and virtual reality. The existing 3D imaging is limited by the physical mechanism of the traditional refraction ele
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811003 (2023)
Review of High-Resolution Shape Measurement Methods for Extendable Surfaces
Luyao Ma, Jigui Zhu, Linghui Yang, Ruiying Liao, Haoyue Liu, Yiyuan Fan, and Shuo Yang
Three-dimensional (3D) shape measurements based on high-density point clouds are currently replacing conventional discrete coordinate measurements and are thus a new development trend in the field of geometric measurement. In addition to their narrow-sense manufacturing applications, the multi-spatial-resolution charac
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811005 (2023)
Application of Deep Learning Technology to Photometric Stereo Three-dimensional Reconstruction
Guohui Wang, and Yanting Lu
Photometric stereo three-dimensional (3D) reconstruction is a hot topic in the fields of machine vision and photometry. This method is widely used because of its simple equipment, low cost, and high resolution. With the rapid advancement of artificial intelligence and deep learning technology in recent years, the devel
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811011 (2023)
Application of Optical Coherence Tomography in Fingertip Biometrics
Qingran Miao, Haixia Wang, Yang Yu, and Yilong Zhang
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811012 (2023)
Advances in High-Accuracy Three-Dimensional Dynamic Deformation Measurement and its Applications for Large Structures
Xinxing Shao, Fang Yuan, Kang Wei, and Xiaoyuan He
High-accuracy panoramic three-dimensional (3D) dynamic deformation measurements are of considerable significance for studying the mechanical properties of large or ultra-large structures. As a simple, non-contact, and high-precision full-field deformation measurement technology, three-dimensional digital image correlat
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811013 (2023)
Speckle Structured-Light-Based Three-Dimensional Imaging Technology and Its Sensor Design Using VCSEL Projection Array
Wei Yin, Mingyu Li, Yan Hu, Shijie Feng, Xiaolei Zhang, Huai Wang, Qian Chen, and Chao Zuo
Speckle projection profilometry (SPP) encodes depth information of a scene by projecting a single random speckle pattern and establishes the global correspondences between stereo images using speckle matching technology, thereby achieving a single-shot three-dimensional (3D) reconstruction. However, it is still difficu
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811014 (2023)
Three-Dimensional Measurement System of Fringe-Structured Light Based on High-Speed LED Array
Xiehui Geng, Jingming Song, Lei Zhang, Chao Zuo, and Mingjie Sun
Projection speed of a digital light processing projector is low, which limits the three-dimensional (3D) measurement speed of structured light. To solve this problem, a 3D measurement system of fringe-structured light based on a high-speed light emitting diode (LED) array is proposed using the LED array with terahertz
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811015 (2023)
3D Optical Sectioning Microscopy with Sparse Structured Illumination
Yunze Lei, Peng Gao, Xing Liu, Jiaoyue Li, Xiaofei Chen, Juanjuan Zheng, Sha An, Dan Dan, and Baoli Yao
Optical microscopy has the advantages of low sample damage as well as high specificity imaging and is an indispensable imaging technique in many fields, such as biomedicine, life science, and material chemistry. However, the conventional optical microscope uses parallel light to illuminate the entire sample, which cann
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811016 (2023)
High-Precision 3D-Imaging Technology Under Complex Illumination
Huijie Zhao, Yuxi Li, Hongzhi Jiang, and Xudong Li
The processing of modern industrial parts has realized the technology for directly inputting 3D computer-aided design models into numerical control systems without the need for two-dimensional marking blueprints. The advancement of processing technology has introduced new challenges to workpiece measurement and quality
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811018 (2023)
Source Rendering Platform for Splicing Realized Integral Imaging Light Field 3D Display
Weize Li, Qionghua Wang, Tongyu Wang, Linbo Zhang, Hanle Zhang, and Yan Xing
Multiscreen splicing can realize integral imaging light field 3D displays with various sizes; however, the 3D source generation process is complex. This study proposes a 3D source rendering platform that can provide sources for the multiscreen splicing realized integral imaging light field 3D display. The obtained 3D i
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811019 (2023)
Crosstalk-Free Integral Imaging 3D Display in Full Stereo Viewing Area
Hui Deng, Lü Guojiao, Fei Wu, Mei Yang, and Huan Deng
Because of features such as continuous viewpoints and visual-aid elimination, a integral imaging three-dimensional (3D) display technology has gained widespread acceptance; however, its common phenomenon of visual crosstalk seriously affects the stereoscopic viewing effect. In this study, the effective pixel region of
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811020 (2023)
Multi-Spatial Light Modulator Splicing-Based Real 3D Display of Spatially Suspended Holography
Jicheng Liu, Han Wu, Hongyue Gao, Wen Zhou, Changzhi Yin, Kaiyu Gu, Bin Jia, Zhiyang Yu, Yu Shen, Xuanmin Huang, Yucong Zhou, Ding Yang, Chengwei Chen, Yanni Chen, Xinglin Wang, Huifeng Hu, Hailei Zhu, Xinge Fu, Xintian Yang, Yuzhe Yan, and Yize Xu
Holographic technology is crucial for realizing a true three-dimensional (3D) display of space suspension. The spatial light modulator (SLM) is currently the only device capable of real-time dynamic holographic true 3D image projection. However, the lack of pixels and resolution limits its application in the field of s
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811021 (2023)
Lensless Edge Enhancement Imaging Technology Based on Spiral Zone Aperture
Zhanquan Tian, Lina Li, Da Sun, Jianshe Ma, and Ping Su
In this study, we propose a lensless coding edge enhancement imaging technology based on a spiral zone aperture whose system comprises a spiral zone aperture and an image sensor. A captured image is reconstructed by backpropagation. In backpropagation, isotropic edge enhancement imaging can be realized by taking the in
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811022 (2023)
Laser Velocimetry Based on Single-Photon Array Camera
Shuang Fu, XiaoRui Tian, Jie Yang, Meng Tang, Siqi Zhang, and Chenfei Jin
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811023 (2023)
Structured Light Field Single-Shot 3D Imaging Algorithm Based on Adaptive Short-Term Fourier Transform
Shangen Jia, Junrui An, Guangquan Zhou, Siyuan He, and Ping Zhou
The phase recovery and dephasing of single-frame structured light images are crucial in the field of three-dimensional (3D) imaging. Theoretically, short-time Fourier transform (STFT) can efficiently complete phase recovery under the condition of selecting appropriate parameters; however, the prerequisite of "appr
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811025 (2023)
Recognition of Points on Three-Dimensional Edge Contour Lines
Huijie Zhao, Liqun Ma, jingjing Fan, and Jihu Wang
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811026 (2023)
Visual Perception Evaluation Method of Stereo Images Based on CNN-SVR
Yuan Xu, Chunyi Chen, Xiaojuan Hu, Haiyang Yu, and Ye Tian
This paper proposes an objective evaluation model of stereo image visual perception based on convolutional neural network (CNN) and support vector regression (SVR) to solve the issue of multidimensional influencing factors for stereo images and improve the accuracy of prediction results. In this proposed model, the pla
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811027 (2023)
Triangular Series Fitting-Based Harmonic Error Correction Method for Indirect Time-of-Flight Camera
Zhaoxiang Jiang, Zhan Song, Zhenzhong Xiao, Xuan Ma, Shaoguang Shi, and Fei Wang
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811028 (2023)
High-Precision Binocular Camera Calibration Based on Super-Resolution Corner Point Detection Algorithm
Ting Sun, Na Chen, Ran Meng, Qian Long, and Qiwei Xie
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811029 (2023)
Three-Dimensional Imaging of an Asphalt Pavement Based on Multiscale Image Fusion Information
Xinglin Zhou, Lu Liu, Ruiqie Jiang, Jing Yuan, and Maoping Ran
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811030 (2023)
Single-Photon Counting 3D Imaging-Based Target Attitude Acquisition
Hanfu Zhang, Jie Liu, Qichang An, and Jianli Wang
Single-photon counting imaging technology has demonstrated potential for applications in faint target detection, laser remote sensing, and automatic driving. Therefore, in order to explore it for obtaining more dimensional target information, a target attitude acquisition method is proposed and verified. The single-pho
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811031 (2023)
3D Surface Reconstruction of Laser Damage of Optical Element Based on Wavelet Transform
Chenxuan Yin, Yunfeng Ma, Wang Cheng, Guangyan Guo, Xuebo Yang, Fang Bai, Can Cao, Jiawei Zhou, Lü Weizhi, Yongjian Zhu, Lifen Liao, and Zhongwei Fan
This paper proposes an improved shape-from-focus (SFF) algorithm based on wavelet transform to realize rapid 3D surface reconstruction of laser damage via online microscopic imaging. Here, the depth was retrieved point by point through the 3D focus evaluation function, thereby reconstructing the 3D surface of the laser
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811032 (2023)
[in Chinese]
Ruikai Xue, Yan Kang, Tongyi Zhang, Fanxing Meng, Xiaofang Wang, Weiwei Li, Lifei Li, and Wei Zhao
In low-light conditions, the single-photon light detection and ranging (Lidar) technique based on time-correlated single-photon counting (TCSPC) is suited for collecting a three-dimensional (3D) profile of the target. We present a rapid 3D reconstruction approach for single-photon Lidar with low signal-to-background ra
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811033 (2023)
[in Chinese]
Hailing Hu, Renji He, Yang Chen, Peiqing Zhang, Xiang Shen, Da Shixun, and Baoan Song
A dual-frequency digital Moiré measurement method (DFDM) is proposed for the three-dimensional (3D) shape measurement of an object. The high- and low-frequency fringes are modulated separately along orthogonal direction using different carrier frequencies before being projected onto the measured object. After coll
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0811034 (2023)
Reviews
[in Chinese]
Huilin Jiang, Liangcai Cao, Kemao Qian, Qican Zhang, and Zhi Liu
Laser & Optoelectronics Progress
  • Publication Date: Apr. 25, 2023
  • Vol. 60, Issue 8, 0800001 (2023)