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相干场成像探测器噪声定量化占比模型 被引量:1

Detector Noise Quantitative Ratio Modelling in Coherent Field Imaging
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摘要 为解决激光相干场成像系统探测器噪声相对总噪声的定量化占比估计问题,分析探测器噪声是否为主要噪声源,提出一种探测器噪声占比权重定量化分析计算方法.基于光电子统计方法得到系统信噪比方程,并引入信噪比中间参数估计方程,建立了探测器噪声相对总噪声的占比权重定量化计算模型.结合理论分析与实验测量进行验证,结果表明:针对构建的相干场成像实验系统,探测器噪声占比权重达52%,进一步分析可知实验在大气相对宁静的夜晚进行,系统受背景光噪声和湍流噪声影响小,探测器噪声是主要噪声源.所提方法可有效估算探测器噪声占比权重,具有便捷、高效的特点,可用于实际相干场成像系统探测器噪声定量化评估测量分析. In order to settle the problem of quantitativly estimating ratio of detector noise and analyse whether detecoror noise is the main noise in laser coherent field imaging system,a novel method of quantitative analysis detector noise ratio was proposed.The Signalt-to-Noise(SNR)of the system was given by photoelectron statistics method,and estimating equation of SNR intermediate parameter was derived.A quantitative ratio model of detector noise to total noise was established by SNR equation and estimating equation of SNR intermediate parameter.The ratio model was tested and verified by theory analysis and experiment.The results show that in the specific experiment table,detector noise is about52% of the total noise.Because the experiment was accomplished at night,turbulence noise and background noise had the least influence on the system,detector noise was the main noise source.The conclusion was acquired that the proposed metod can accurately and effectively estimate detector noise ratio to total noise and has the advantage of simplicity and effectiveness.It can be widely applied in quantitative analysing and measuring of detector noise in laser coherent imaging system.
出处 《光子学报》 EI CAS CSCD 北大核心 2015年第4期98-102,共5页 Acta Photonica Sinica
基金 国家自然科学基金(No.11173053)资助
关键词 激光束相干 噪声分析 实验和分析研究 探测器 噪声计算 信噪比 Laser beams-coherent Noise analysis Experimental and analytical studies Detector Noise calculations SNR
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  • 1黄印博,王英俭.跟踪抖动对激光湍流大气传输光束扩展的影响[J].光学学报,2005,25(2):152-156. 被引量:25
  • 2李刚,周彦平.CCD图像传感器件的输出噪声及其处理电路研究[J].电子质量,2007(4):25-29. 被引量:2
  • 3安兴涛,李玉现,刘建军.介观物理系统中的噪声[J].物理学报,2007,56(7):4105-4112. 被引量:12
  • 4Holmes R B, Brinkley T. Reconstruction of Images of Deep Space Objects Using Fourier Telescopy[J]. SPIE, 1999,3815:11 -22.
  • 5Aleksoff C C. Interferometric Two-dimensional Imaging of Rotating Objects[j]. Optics Letters, 1977,1 (2) :54 - 55.
  • 6Sica L. Effects of Nonredundance on a Synthetic-aperture Imaging System[J]. J. Opt. Soc. Am. A, 1993,10(4) : 567 - 572.
  • 7Brinkley T J, Sandier D. Effect of Atmospheric Turbulence and Jitter on Fourier Telescopy Imaging Systems[J ]. SPIE, 1999,3815:42- 48.
  • 8Long S M. Satellite Motion Determination by Measuring Selected Frequencytriplets with a Fourier Telescopy Facility[ J]. SPIE, 2000,4091:345 - 354.
  • 9Holmes R B, Ma S, Bhowmik A, et al. Aperture-synlhesis Techniques That Use Very-low-power Illumination[J]. SPIE, 1995,2566.
  • 10古德曼. 傅里叶光学导论[M]. 秦克诚等译. 北京:电子工业出版社, 2006. 50-55

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