Volume 42 Issue 4
Feb.  2014
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Zhang Jichao. Application of auto-focusing with margin field for airborne remote sensor[J]. Infrared and Laser Engineering, 2013, 42(4): 1038-1043.
Citation: Zhang Jichao. Application of auto-focusing with margin field for airborne remote sensor[J]. Infrared and Laser Engineering, 2013, 42(4): 1038-1043.

Application of auto-focusing with margin field for airborne remote sensor

  • Received Date: 2012-09-05
  • Rev Recd Date: 2012-10-09
  • Publish Date: 2013-04-25
  • To solve the problem of auto-focusing in large array airborne remote sensor, a method to search position of focal plane in center field through auto-focusing in margin field was presented. Combination of oblique assembling and fine setting were taken to improve precision of auto-focusing, which could settle the influence of field angle in margin field. Microscope adjustment, photographic adjustment and electric adjustment were used to realize coarse calibration, accurate calibration and fine calibration of focal plane position and the problem of difference between focal plane position in center and in margin field was resolved. In servocontrol of the auto-focusing system, coarse-to-fine and ergodic hunting method were taken to find the optimum position of focal plane. Minimum step length was 0.01mm, and repeatability precision was 0.03mm, which was within focal depth and met the requirement. After experiment and flight test, focal plane that was detected by this method was accurate and the photographs were in high quality.
  • [1] Zhang Shuqing, Ding Yalin. Image motion compensation method of a step-frame LOROP camera[J]. Infrared and Laser Engineering, 2008, 37(3): 501-504. (in Chinese) 张树青, 丁亚林. 斜视步进画幅遥感相机像移补偿方法研究[J]. 红外与激光工程, 2008, 37(3): 501-504.
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    [3] Wan Zhi, Ren Jianwen. Analysis of signal-to-noise ratio for remote sensing TDI CCD camera based on radiative transfer model[J]. Infrared and Laser Engineering, 2008, 37(3): 497-500. (in Chinese) 万志, 任建伟. 基于辐射传输模型的TDI CCD遥感相机信噪比分析[J]. 红外与激光工程, 2008, 37(3): 497-500.
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    [6] Lu Jianfeng. Design of real-time processing system for IR image tracking based on digital dignal processor[J]. Infrared and Laser Engineering, 2008, 37: 622-625. (in Chinese) 鲁剑锋.基于DSP的实时红外图像处理系统的设计[J]. 红外与激光工程, 2008, 37: 622-625.
    [7] Ding Zhenyong Ye Lu. Detection method of parallelism of optic axes between laser and visible optical systems[J]. Infrared and Laser Engineering, 2008, 37(5): 890-893. (in Chinese) 丁振勇, 叶露. 激光与可见光系统光轴平行性检测[J]. 红外与激光工程, 2008, 37(5):890-893.
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    [10] Wang Dejiang. Effects of gyro de-noising algorithm on aerial camera motion compensation system[J]. Infrared and Laser Engineering, 2010, 39(5): 968-978. (in Chinese) 王德江. 陀螺去噪算法对航空相机像移补偿系统的影响[J]. 红外与激光工程, 2010, 39(5): 968-978.
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    [12] Zhang Dexin. Design of super-wide-angle aerial reconnaissance CCD camera[J]. Infrared and Laser Engineering, 2010, 39(6): 1060-1065. (in Chinese) 张德新.宽角航空侦察CCD相机设计[J]. 红外与激光工程, 2010, 39(6): 1060-1065.
    [13] Wang Junshan. Characteristic analysis and correction technique about the image rotation of aerial camera[J]. Infrared and Laser Engineering, 2008, 37(3): 493-496. (in Chinese) 王俊善. 航空相机的像面旋转特性分析及其补偿方法[J]. 红外与激光工程, 2008, 37(3): 493-496.
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Application of auto-focusing with margin field for airborne remote sensor

  • 1. Key Laboratory of Airborne Optical Imaging and Measurement,Chinese Academy of Science,Changchun 130033,China;
  • 2. Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Science,Changchun 130033,China

Abstract: To solve the problem of auto-focusing in large array airborne remote sensor, a method to search position of focal plane in center field through auto-focusing in margin field was presented. Combination of oblique assembling and fine setting were taken to improve precision of auto-focusing, which could settle the influence of field angle in margin field. Microscope adjustment, photographic adjustment and electric adjustment were used to realize coarse calibration, accurate calibration and fine calibration of focal plane position and the problem of difference between focal plane position in center and in margin field was resolved. In servocontrol of the auto-focusing system, coarse-to-fine and ergodic hunting method were taken to find the optimum position of focal plane. Minimum step length was 0.01mm, and repeatability precision was 0.03mm, which was within focal depth and met the requirement. After experiment and flight test, focal plane that was detected by this method was accurate and the photographs were in high quality.

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