中国光学, 2017, 10 (6): 777, 网络出版: 2017-12-25   

美军新型机载光电瞄准系统工作原理分析

The operational principle analysis of new airborne Electro-Optical Targeting System(EOTS) of US army
作者单位
中国科学院 长春光学精密机械与物理研究所, 吉林 长春130033
摘要
光电瞄准系统(EOTS)将前视红外和红外搜索跟踪进行了综合, 进而可以获得高分辨率图像, 实现自动跟踪、红外搜索跟踪、激光指示、激光测距和激光点跟踪。本文针对美国研制的EOTS的工作原理展开分析和研究, 概述了EOTS的概念和技术特点, 显示了其作为新一代机载光电瞄准系统的先进性。对EOTS多功能系统、光学元件、红外搜索跟踪、维护和研制规划进行了介绍, 着重分析了EOTS的自动视轴校准系统, 主要包括自动视轴校准系统的工作原理和工作步骤。最后, 本文对EOTS系统的性能进行了总结。
Abstract
The Electro-Optical Targeting System(EOTS) integrates forward-looking infrared(FLIR) and infrared search and track(IRST) to obtain high-resolution images for automatic tracking, infrared search tracking, laser target designating, laser ranging, and laser spot tracking. In this paper, we analyze and study the operating principle of EOTS developed in the United States. Firstly, we summarize the concept and the technical characteristics of EOTS, and present its advanced nature as a new generation of airborne EOTS. Secondly, the EOTS multi-function system, optical components, IR search, maintenance and development planning are introduced. The operational principle and steps of the automatic bore sight calibration system of EOTS are analyzed emphatically. Finally, the performance of EOTS system is summarized.
参考文献

[1] 钟坚.国外光电侦察告警技术的装备与发展[J].舰船电子工程,2008,28(4):30-33.

    ZHONG J. Equipment and development tendency of ele-fro-optical warming reconnaissance technology[J]. Ship Electronic Engineering,2008,28(4):30-33.(in Chinese)

[2] 沈宏海,黄猛,李嘉全,等.国外先进航空光电载荷的进展与关键技术分析[J].中国光学,2012,5(1):20-29.

    SHEN H H,HUANG M,LI J Q,et al.. Recent process in aerial electro-optic payloads and their key technologies[J]. Chinese Optics,2012,5(1):20-29.(in Chinese)

[3] 王大鹏,范惠林,侯满义,等.轰炸光电瞄准系统现状与发展[J].激光与红外,2013,43(9):977-981.

    WANG D P,FAN H L,HOU M Y,et al.. Status and development of bombing electro-optic targeting system[J]. Laser and Infrared,2013,43(9):977-981.(in Chinese)

[4] 尹传历,王啸哲.机载嵌入式图像增强系统设计与实现[J].液晶与显示,2013,28(4):604-607.

    YIN CH L,WANG X ZH. Design and realization of airborne embedded image enhancement system[J]. Chinese Journal of Liquid Crystals and Display,2013,28(4):604-607.(in Chinese)

[5] 李刚,张赫.机载光电平台实时图像消旋[J].液晶与显示,2014,29(2):304-309.

    LI G,ZHANG H. Real-time image rotation-elimination for airborne photoelectric platform[J]. Chinese Journal of Liquid Crystals and Display,2014,29(2):304-309.(in Chinese)

[6] 杨权,刘晶红,马晓飞.基于图像处理的机载光电平台自动调焦方法[J].液晶与显示,2011,26(5):677-682.

    YANG Q,LIU J H,MA X F. Auto-Focusing method based on image processing for airborne electro-optical imaging platform[J]. Chinese Journal of Liquid Crystals and Display,2011,26(5):677-682.(in Chinese)

[7] 杨百剑,万欣.新一代机载红外搜索跟踪系统技术发展分析[J].激光与红外,2011,41(9):961-964.

    YANG B J,WAN X. New generation of IRST technology in plane development[J]. Laser and Infrared,2011,41(9):961-964.(in Chinese)

[8] 范永杰,金伟其,刘崇亮.前视红外成像系统的新进展[J].红外与激光工程,2010,39(2):189-194.

    FAN Y J,JIN W Q,LIU CH L. New process on FLIR imaging system[J]. Infrared and Laser Engineering,2010,39(2):189-194.(in Chinese)

[9] 张振东,陈健,王伟国,等.基于SSIM_NCCDFT的超分辨率复原评价方法研究[J].液晶与显示,2015,30(4):713-721.

    ZHANG ZH D,CHEN J,WANG W G,et al.. Evaluation method of super-resolution restoration based on SSIM_NCCDFT[J]. Chinese Journal of Liquid Crystals and Display,2015,30(4):713-721.(in Chinese)

[10] 周维虎,韩晓泉,吕大旻,等.军用光电系统总体技术研究[J].红外与激光工程,2006,35:9-14.

    ZHOU W H,HAN X Q,LV D M,et al.. Investigation of overall design technology of military opto-electronic systems[J]. Infrared and Laser Engineering,2006,35:9-14.(in Chinese)

[11] 单海蛟,刘伟宁,王嘉成,等.多传感器自主跟踪中的数据融合方法[J].液晶与显示,2016,31(8):801-809.

    SHAN H J,LIU W N,WANG J CH,et al.. Data fusion method in muli-sensors autonomous tracking[J]. Chinese Journal of Liquid Crystals and Display,2016,31(8):801-809.(in Chinese)

[12] 彭树萍,陈涛,刘廷霞,等.激光发射系统快速反射镜的光线反射过程[J].光学 精密工程,2015,23(2):378-386.

    PENG SH P,CHEN T,LIU T X,et al.. Reflection process of fast-steering mirror of laser launching system[J]. Opt. Precision Eng.,2015,23(2):378-386.(in Chinese)

[13] 王颖丽.第三代红外搜索和跟踪(IRST)系统[J].激光与红外,2009,39(10):1017-1021.

    WANG Y L. The third generation infrared search and track(IRST) system[J]. Laser and Infrared,2009,39(10):1017-1021.(in Chinese)

[14] 李艳杰,金光,张元,等.成像与激光发射系统的共口径设计与实验[J].中国光学,2015,8(2):220-226.

    LI Y J,JIN G,ZHANG Y,et al.. Co-aperture optical system for imaging and laser transmitting[J]. Chinese Optics,2015,8(2):220-226.(in Chinese)

[15] 韩昌元.光电成像系统的性能优化[J].光学 精密工程,2015,23(1):1-9.

    HAN CH Y. Performance optimization of electro-optical imaging systems[J]. Opt. Precision Eng.,2015,23(1):1-9.(in Chinese)

陈健, 王伟国, 刘廷霞, 张振东. 美军新型机载光电瞄准系统工作原理分析[J]. 中国光学, 2017, 10(6): 777. CHEN Jian, WANG Wei-guo, LIU Ting-xia, ZHANG Zhen-dong. The operational principle analysis of new airborne Electro-Optical Targeting System(EOTS) of US army[J]. Chinese Optics, 2017, 10(6): 777.

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