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基于边缘概率尺度的激光干扰效果评价方法 被引量:2

Evaluation Method for Laser Jamming Effect Based on Probability of Edge Metric
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摘要 以现有的目标获取性能模型NVESD为基础,分析杂波对于"人在回路"系统目标获取性能的影响,并针对激光干扰图像的特点,将杂波修正后的目标获取性能模型运用到激光干扰图像研究中,提出一种基于图像边缘概率尺度的激光干扰效果评价方法。该方法结合人眼的目标获取任务,从激光干扰如何影响人眼的搜索探测概率角度来研究激光干扰效果。对于CCD探测器的干扰实验结果表明,该方法能够反映激光干扰图像对于搜索探测概率的影响,较好地反映了激光干扰效果,从而验证了方法的有效性。 Based on Night Vision and Electronic Sensors Directorate(NVESD) Target Acquisition Performance(TAP) models,the clutter impact on human-in-loop TAP is analyzed.Aimed at characteristics of laser jamming image,a modified TAP model based on clutter metric is applied to analyze laser jamming image.Then,an evaluation method for laser jamming effect based on Probability of Edge(POE) metric is proposed.The method combines with human target acquisition task and laser jamming effect evaluation is researched from the aspect of laser jamming influence on human search and detection probability.Experimental results of laser jamming to CCD show that the method can reflect the influence of laser jamming image on search and detection probability and can reflect laser jamming effect evaluation effectively.Hence,the validity of this method is verified.
出处 《光电工程》 CAS CSCD 北大核心 2010年第11期37-42,共6页 Opto-Electronic Engineering
基金 重点实验室基金资助项目(10J1003) 光电信息控制和安全技术重点实验室基金项目(20100713-003)
关键词 激光干扰 NVESD 目标获取性能 杂波 边缘概率 laser jamming NVESD target acquisition performance clutter POE
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  • 1张英远,郑荣山,刘劲松.脉冲激光对星载探测器的干扰和损伤分析[J].电子与信息学报,2006,28(9):1758-1760. 被引量:18
  • 2Gross P, Klein M E, Walde T, et al. Fiber-laser-pumped continuous-wave singly resonant optical parametric oscillator [J]. Opt. Lett(S1044-8144), 2002, 27(6): 418-420.
  • 3Henderson A J, Roper P M, Borschowa L A, et al. Stable, continuously tunable operation of a diode-pumped doubly resonant opticalparametric oscillator [J]. Opt. Lett(S1044-8144), 2000, 25(17): 1264-1266.
  • 4Stothard D J M, Lindsay I D, Dunn M H. Continuous-wave pump-enhanced optical parametric oscillator with ring resonator for wide and continuous tuning of single-frequency radiation [J]. Opt. Exp(S1094-4087), 2004, 12(3): 502-511.
  • 5Klein M E, Laue C K, Lee D H, et al. Diode-pumped singly resonant continuous-wave optical parametric oscillator with wide continuous tuning of the near-infrared idler wave [J]. Opt. Lett(S1044-8144), 2000, 25(7): 490-492.
  • 6Smith R G. A study of factors affecting the performance of a continuously pumped doubly resonant optical parametric oscillator [J]. IEEE J. Quantum Electron(S0018-9197), 1973, QE-9: 530-541.
  • 7Eckardt R C, Nabors C D, Kozlovsky W J, et al. Optical parametric osoillator frequency tuning and control [J]. Opt. Soc. Am. B(S0740-3224), 1991, 8(3): 646-667.
  • 8Colville F G, Padgett M J, Dunn M H. Continuous-wave, dual-cavity, doubly resonant, optical parametric oscillator [J]. Appl. Phys. Lett(S0003-6951), 1994, 64: 1490-1492.
  • 9Yang S T, Eckardt R C, Byer R L. Continuous-wave singly resonant optical parametric oscillator pumped by a single-frequency resonantly doubled Nd: YAG laser [J]. Opt. Lett(S1044-8144), 1993, 18(12): 971-973.
  • 10Henderson A J, Stafford R. Intra-cavity power effects in singly resonant cw OPOs [J]. Appi. Phys. B(S0946-2171), 2006, 85(2/3): 181-184.

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