Contents
2020
Volume: 49 Issue 10
29 Article(s)

Export citation format
Adaptive Optics
Aberration correction for flow velocity measurements using deep convolutional neural networks
Zeyu Gao, Xinyang Li, and Hongwei Ye
Optical imaging-based flow measurement techniques, like particle image velocimetry, are vulnerable to optical distortions caused by inhomogeneous refractive index or fluctuating phase boundaries. These distortions can lead to blurred particle images and uncertain tracer particle position assignment, resulting in a degr
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200267 (2020)
SPGD algorithm with adaptive gain
Zhou Fang, Xiangxiang Xu, Xin Li, Jinlong Liu, Huizhen Yang, and Chenglong Gong
SPGD is a control algorithm widely used in wavefront sensorless adaptive optics (AO) systems. The gain is commonly set to a fixed value in the traditional SPGD algorithm. With the increase of the number of DM elements, which can easily lead to the slow convergence speed of the algorithm and the increase of the probabil
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200274 (2020)
Detection methods for instability of adaptive optics system
Qiwang Jia, Xinyang Li, and Xi Luo
Applying adaptive optics (AO) system to correct aberrations is an effective technical way to improve the performance of optical systems. In order to ensure the long-term, safe and stable operation of the AO system, it is necessary to monitor the operating data of the AO system and identify the instability state of the
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200299 (2020)
Application of adaptive optics coherence tomography in retinal high resolution imaging
Wenqiang Fan, Zhichen Wang, Baogang Chen, Tao Chen, and Qichang An
Retinal optical coherence tomography (OCT) technology uses external low coherence light source to irradiate the fundus of the human eye, and interfere scattered signals of the fundus of the human eye to obtain the sectional image information of the human retina, so as to realize the non-invasive, real-time and in vivo
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200333 (2020)
Review of optical phased array techniques
Yanxing Ma, Jian Wu, Rongtao Su, Pengfei Ma, Pu Zhou, Xiaojun Xu, and Yijun Zhao
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20201042 (2020)
Simulation research on adaptive optics system based on light field camera
Quan Sun, Cheng Li, Yulong He, He Liu, Jing Wang, and Xiaojun Xu
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20201043 (2020)
Image Processing
Incoherent digital holographic color imaging with high accuracy image registration
Hong Ren, Yuanzhuang Bu, Xi Wang, Yu Li, Yanli Du, Qiaoxia Gong, Jinhai Li, Fengying Ma, and Jianpo Su
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200022 (2020)
Star map recognition method of L2 normal distance
Zewen Wang, Guangjun Wang, Xiaobo Liu, and Jinhua She
Based on the Hausdorff distance (HD), a star map recognition method was presented that did not depend on the rotation direction and focal length of the star sensor. When constructing the data point set of Hausdorff distance, the relative Euclidean distance corresponding to norm L2 was used as the set element to solve t
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200040 (2020)
Three-dimensional trajectory tracking recognition of multiple vehicles under displacement vector consistency
Ju Huo, Mingxuan He, Yunhui Li, and Muyao Xue
The tracking and recognition of the three-dimensional trajectories of cooperative target points is the key to the estimation of the position and attitude of multi-aircraft in an indoor environment. Therefore, a multi-target three-dimensional trajectory tracking and recognition algorithm based on time and space consiste
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200141 (2020)
Infrared Technology and Application
Effects of low emissivity material coating site on wall temperature and infrared characteristics of exhaust system
Feifei Cao, Honghu Ji, Mingfei Yu, and kaijun Wu
In order to study the effects of the parts coated by infrared low-emissivity material on the wall temperature and infrared radiation (IR) characteristics of the exhaust system, the wall temperatures and IR characteristics of the axisymmetric and serpentine 2-D exhaust system were measured in three coating schemes, i.e.
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20190131 (2020)
Design of hybrid refractive-diffractive infrared dual-band zoom optical system
Hongtao Yang, Xiaofan Yang, Chao Mei, and Weining Chen
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200036 (2020)
Research on adaptive adjustment technology for space-based infrared detection load
Ping Cai, Xiaoyan Li, Xiaofeng Su, Tingliang Hu, and Fansheng Chen
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200076 (2020)
Infrared Techonlogy and Application
Development on temperature and pressure control system for multi-pass gas cell utilized in infrared gas detection
Yue Hou, and Kejin Huang
In order to realize the high performance detection of CO2 gas isotope, a multi-pass gas cell temperature and pressure control system with high precision and stability was developed in this paper. Flexible PCB was used as heating sheet to cover the cylindrical multi-pass cell. Considering the heating rate of the tempera
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20190525 (2020)
Laser & Laser Optics
Numerical analysis on backward light amplification and damage in high-power fiber laser
Quan Sheng, Hanying Si, Jianmin An, Haiwei Zhang, Junxiang Zhang, Yu Ding, Shengcai Li, Wei Shi, and Jianquan Yao
The amplification of continuous-wave backward signal in 1 μm high-power master-oscillator-power-amplifier based Yb-doped fiber laser was investigated using rate equation model. The results show that the backward light power would be amplified significantly by the high-power amplifier. The 100 W backward signal from the
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200009 (2020)
Study on signal light transmission efficiency enhancement of backward pump-signal combiners in high-power fiber lasers
Zeyuan Fang, Lu Yin, Mingjian Yan, Zhigang Han, Hua Shen, and Rihong Zhu
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200014 (2020)
Lasers and Laser Optics
Application of array detection technology in laser ranging
Haitao Zhang, Zhulian Li, Rufeng Tang, Dongsheng Zhai, Rongwang Li, Xiaoyu Pi, Honglin Fu, and Yuqiang Li
High-precision space debris observation data is of great significance for spacecraft collision early warning. Laser ranging technology is the most accurate technology in space target distance measurement at present, but there is no angle reflector device on most of space debris, and the echo signal of space debris lase
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200006 (2020)
Experiment of satellite laser ranging in daytime based on 1 064 nm wavelength
Huarong Deng, Mingliang Long, Haifeng Zhang, Zhibo Wu, Kai Tang, and Zhongping Zhang
At 1 064 nm, the atmospheric transmittance is high and the sky background radiation is small. The use of this laser to carry out satellite ranging is helpful to improve the observation capability of ranging system, and satellite laser ranging of the 1 064 nm has become one of the important development trends of interna
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200021 (2020)
Restrain range walk error of Gm-APD lidar to acquire high-precision 3D image
Lu Xu, Xu Yang, Long Wu, Xiaoan Bao, and Yijia Zhang
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200218 (2020)
Optical Communication and Sensing
Study on frequency-drifting characteristics of photo-elastic modulator and stability of Fourier transform spectra
Minjuan Zhang, Wenjing Liu, Zhibin Wang, Meifang Xu, Rui Zhang, and Chunyang Li
Photo-elastic modulator (PEM) is a high-Q resonant device. When driven by a high voltage resonant signal, its resonant frequency will drift with its temperature change, and the stability of the interferometer and the accuracy of the rebuilt spectrum are affected. The vibration model and frequency- drifting model of the
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200019 (2020)
Design of dynamic tracking for periscopic laser communication terminal system based on iterative learning control
Min Zhang, Bo Li, and Yunjie Teng
In order to improve the dynamic tracking performance of periscope laser communication terminal servo system, the control system of two dimensional servo turntable based on permanent magnet synchronous motor was designed in this paper. The field oriented control method was adopted to realize the decoupling control of th
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200056 (2020)
Ant colony optimization routing and wavelength technology for software-defined satellite optical networks
Xiaodong Shi, Yongjun Li, Shanghong Zhao, and Weilong Wang
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200125 (2020)
Review of research on Φ-OTDR system based on pulse modulation
Xiang Zhong, Shisong Zhao, Huaxia Deng, Jin Zhang, and Mengchao Ma
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200166 (2020)
Photoelectric Measurement
Hybrid phase retrieval with chromatic dispersion in single-lens system
Hong Cheng, Yong Liu, Jiajie Hu, Xiaolong Zhang, Huilong Deng, and Sui Wei
Phase retrieval is to recover the original phase information by using the intensity information obtained from observation. Transport of intensity equation (TIE), as a traditional non-interference phase retrieval technique, can compute the losing phase information from only a minimum of two intensity measurements at clo
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200017 (2020)
Design and error analysis of measurement structure for large aperture space camera mainboard
Chao Gao, Fang Chen, and Haiyang Sun
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200046 (2020)
Development of coaxiality measurement system of turbine components and stud standard parts
Bo Zhang, Wengjian Zhang, and Lihua Lei
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200216 (2020)
Raman mineral recognition method based on all-optical diffraction deep neural network
Xu Zhang, Mingxin Yu, Lianqing Zhu, Yanlin He, and Guangkai Sun
A recognition method of mineral Raman spectrum based on all-optical diffraction neural network was proposed. Firstly, the data structure characteristics of the Raman spectra of minerals were analyzed, the similarities and differences between traditional neural network and optical diffractive neural network were compare
Infrared and Laser Engineering
  • Publication Date: Oct. 25, 2020
  • Vol. 49, Issue 10, 20200221 (2020)