谭威, 黄贤伟, 蒋腾, 付芹, 南苏琴, 邹璇彭凡, 白艳锋, 傅喜泉. 复杂环境下含噪信号光对关联成像的影响研究(特邀)[J]. 红外与激光工程, 2021, 50(12): 20210657. DOI: 10.3788/IRLA20210657
引用本文: 谭威, 黄贤伟, 蒋腾, 付芹, 南苏琴, 邹璇彭凡, 白艳锋, 傅喜泉. 复杂环境下含噪信号光对关联成像的影响研究(特邀)[J]. 红外与激光工程, 2021, 50(12): 20210657. DOI: 10.3788/IRLA20210657
Tan Wei, Huang Xianwei, Jiang Teng, Fu Qin, Nan Suqin, Zou Xuanpengfan, Bai Yanfeng, Fu Xiquan. Research on the effect of noise-containing signal light on correlated imaging in complex environment (Invited)[J]. Infrared and Laser Engineering, 2021, 50(12): 20210657. DOI: 10.3788/IRLA20210657
Citation: Tan Wei, Huang Xianwei, Jiang Teng, Fu Qin, Nan Suqin, Zou Xuanpengfan, Bai Yanfeng, Fu Xiquan. Research on the effect of noise-containing signal light on correlated imaging in complex environment (Invited)[J]. Infrared and Laser Engineering, 2021, 50(12): 20210657. DOI: 10.3788/IRLA20210657

复杂环境下含噪信号光对关联成像的影响研究(特邀)

Research on the effect of noise-containing signal light on correlated imaging in complex environment (Invited)

  • 摘要: 关联成像是通过对测得的参考光和信号光进行关联计算来获取物体信息的新型成像技术。在复杂环境中,湍流、散射等因素会以噪声的形式影响信号光的测量。由于关联成像中信号光是以桶探测器来测量的,因此,对这种含噪信号光的处理及其在关联成像过程中的影响有必要进行系统地研究。文中系统地回顾了笔者所在课题组在上述背景下的相关研究。首先,简述了复杂环境下的关联成像模型;然后,分析了含噪信号光对二值目标和灰度目标关联成像的影响;接着,对大气信道中湍流引起的信号噪声进行了测量和分析,最后,对关联成像的应用进行了展望。

     

    Abstract: Correlated imaging is a kind of novel imaging technology which can reconstruct the target information on the optical path through intensity correlation calculation. In complex environments, turbulence, scattering and other factors will affect the measurement of signal light in the form of noise. Since the signal light in correlated imaging is measured by bucket detector, it is necessary to systematically study the processing of noise-including signal light and its influence on the process of correlated imaging. Under this background, this paper systematically reviewed the related research of our research group. Firstly, the correlated imaging model in complex environment was briefly introduced. Then, the influence of noise-including signal light on correlated imaging of binary target and gray target was analyzed. Then, the signal noise caused by turbulence in the atmospheric channel was measured and analyzed. Finally, the application of the correlated imaging was prospected.

     

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