光子学报, 2014, 43 (3): 0311002, 网络出版: 2014-04-09   

光栅衍射型超广角激光告警系统光斑定位方法

Algorithm for Laser Spot Center Locating in Super Wide-angle Laser Warning System Based on Grating Diffraction
作者单位
军械工程学院 电子与光学工程系, 石家庄 050003
摘要
成像光斑中心精确定位是光栅衍射型超广角激光告警系统具有高定向准确度和高波长分辨能力的基础.本文分析了光栅衍射型超广角激光告警系统成像光斑特点.针对随激光入射角增大,系统成像光斑畸变为强度近似高斯分布倾斜光斑的问题,提出一种改进型高斯拟合法计算光斑中心,通过仿真模拟和实验测试研究了新方法的定位性能.模拟结果表明,高斯噪音标准差为0.01情况下,光斑长轴与x轴夹角由0°逐渐增大为90°过程中,本文方法的定位误差平均值小于0.005像素,误差标准差小于0.02像素.实验测试表明,实验图像经帧相减和高斯平滑滤波预处理后,光斑长轴与坐标轴方向一致时,本文方法与高斯拟合法的定位结果非常接近,明显优于灰度重心法.光斑倾斜时,本文方法求得的激光入射方向角的误差均值和标准差明显小于灰度重心法和普通高斯拟法.
Abstract
The directional accuracy and wavelength resolution is highly dependent on the laser spot center location accuracy for the super wide-angle laser warning system based on grating diffraction. The spot features of this system was analyzed. As the imaged spots became tilt and its intensity was similar to Gaussian distribution with the laser arrival angle increasing, a new improved Gaussian fitting algorithm was proposed to locate the spot center. Then the accuracy and stability were verified by simulation and experiment test. The simulation results show that when the angle between long axis of imaged spot and x axis increases from 0° to 80° with standard error of Gaussian noise 0.01, mean errors and standard error of this method are smaller than 0.005 pixel and 0.02 pixel, respectively. The experiment test shows that after pre-process of frame subtraction and Gaussian filtering, results of the proposed method are close to weighted centroid and Gaussian fitting if the long axis of imaged spot is parallel to x or y axis, and both mean error and standard error for laser incoming direction of this proposed method are smaller than the other two methods when the imaged spot is tilted.
参考文献

[1] 张景旭.激光威胁源告警定向技术研究[J].光学精密工程, 2000,8(4):365-368.

    ZHANG Jing-xu. Warning and orienting technology for threaten laser[J]. Optics and Precision Engineering, 2000, 8(4): 365-368.

[2] 石岚,王宏.美军激光告警技术与装备发展分析[J].红外与激光工程, 2008,37(S):335-339.

    SHI Lan, WANG Hong. Research on the America′s laser warning technologies and equipments[J]. Infrared and Laser Engineering, 2008, 37(S): 335-339.

[3] 朱家健.“解剖”激光告警[J].物理, 2009, 38(11):828-331.

    ZHU Jia-jian. Overview of laser warning technology[J].Physics, 2009, 38(11): 828-331.

[4] 淦元柳,李朝荣 激光告警与激光干扰技术的发展[J].舰船电子工程, 2010,30(12):15-19.

    GAN Yuan-liu, LI Chao-rong. Dvelopment of laser alarm and laser interference technology[J]. Ship Electronic Engineering, 2010, 30(12): 15-19.

[5] 王龙,王永仲,沈学举,等.基于光栅衍射的广角凝视型激光告警技术研究[J].光学学报,2013, 33(3):0312005(5).

    WANG Long, WANG Yong-Zhong, SHEN Xue-ju, et al. Study of wide-angle staring laser threat detection system based on grating diffraction[J]. Acta Optica Sinica, 2013, 33(3): 0312005(5).

[6] 王学伟,张春华,赵昭,等.低信噪比星象质心定位算法分析[J].红外技术,2009,31(6):342-347.

    WANG Xue-wei, ZHANG Chun-hua, ZHAO Zhao, et al. High accuracy centroid calculation of low SNR star image[J].Infrared Technology, 2009, 31(6): 342-347.

[7] 唐冠群,几种激光光斑中心定位算法的比较.[J].北京机械工业学院学报,2009,24(1):61-64.

    TANG Guan-qun. Analysis and comparison of several calculation methods of beam spot center[J]. Journal of Beijing Institute of Machinery, 2009, 24(1): 61-64.

[8] 周中亮,周冰,何永强,等.成像型激光探测系统中光斑精确定位方法研究[J].激光技术, 2008,32(3):248-251.

    ZHOU Zhong-liang, ZHOU Bing, HE Yong-qiang, et al. Laser spot location in imaging laser detecting systems[J]. Laser Technology, 2008, 32(3): 248-251.

[9] 秦义,付小宁,黄峰.激光光斑定位的多圆拟合算法的研究[J].西安科技大学学报, 2006,26(4):519-523.

    QIN Yi, FU Xiao-ning, HUANG Feng. Multi-circle fitting algorithms for laser spot location[J]. Journal of Xi′an University of Science and Technology, 2006, 26(4): 519-523.

[10] 冯新星,张丽艳,叶南,等.二维高斯分布光斑中心快速提取算法研究[J].光学学报, 2012, 32(5): 0512002(8).

    FENG Xin-xing, ZHANG Yan-li, YE Nan, et al. Fast algorithms on center location of two dimensional gaussian distribution spot[J]. Acta Optica Sinica, 2012, 32(5): 0512002(8).

[11] 董红军,周中亮,王龙.鱼眼成像型激光告警系统光斑中心亚像元定位方法[J].中国激光, 2011,38(9):0917002(7).

    DONG Hong-jun, ZHOU Zhong-liang, WANG Long. Subpixel location algorithm for laser spot in fish-eys imaging laser warning system[J]. Chinese Journal of Lasers, 2011, 38(9): 0917002(7).

[12] 王海涌,费峥红,王新龙.基于高斯分布的星象点精确模拟及质心计算[J].光学精密工程, 2009, 17(7):1672-1677.

    WANG Hai-yong, FEI Zheng-hong, WANG Xin-long. Precise simulation of star spots and centroid calculation based on Gaussian distribution[J]. Optics and Precision Engineering, 2009, 17(7): 1672-1677.

[13] 林晓杰,姚剑敏,郭太良,等.玻璃测厚系统中激光双光斑中心定位方法[J].光电子技术,2012,32(2):119-122.

    LIN Xiao-jie, YAO Jian-min, GUO Tai-liang, et al. Research of double laser spot center location method in glass thickness system[J].Optoelectronic technology, 2012, 32(2): 119-122.

[14] 王永仲. 鱼眼镜头光学[M]. 北京: 科学出版社, 2006:30- 40, 46, 55.

[15] 黄富瑜,李刚,何永强,等.全向激光探测系统中光斑精确定位方法研究[J].激光与红外, 2010,40(11):1224-1228.

    HUANG Fu-yu, LI Gang, HE Yong-qiang, et al. Algorithm for laser spot precise locating in omni-directional laser detecting system[J]. Laser & Infrared, 2010, 40(11): 1224-1228.

王龙, 王永仲, 沈学举, 何永强, 张维安, 董红军. 光栅衍射型超广角激光告警系统光斑定位方法[J]. 光子学报, 2014, 43(3): 0311002. WANG Long, WANG Yong-zhong, SHEN Xue-ju, HE Yong-qiang, ZHANG Wei-an, DONG Hong-jun. Algorithm for Laser Spot Center Locating in Super Wide-angle Laser Warning System Based on Grating Diffraction[J]. ACTA PHOTONICA SINICA, 2014, 43(3): 0311002.

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