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中国科学院 长春光学精密机械与物理研究所,吉林 长春,中国,130033
[ "曲利新 (1966-),男,吉林长春人,研究员,1989年于长春光学精密机械学院获得学士学位,主要研究方向为空间光学成像技术等。E-mail:qulx2007@163.com" ]
收稿日期:2011-03-01,
修回日期:2011-04-02,
网络出版日期:2011-11-25,
纸质出版日期:2011-11-25
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曲利新. 高分辨力遥感相机视频处理的温度适应性设计[J]. 光学精密工程, 2011,19(11): 2800-2804
QU Li-xin. Design of temperature adaptability for video processing in high-resolution remote sensing cameras[J]. Editorial Office of Optics and Precision Engineering, 2011,19(11): 2800-2804
曲利新. 高分辨力遥感相机视频处理的温度适应性设计[J]. 光学精密工程, 2011,19(11): 2800-2804 DOI: 10.3788/OPE.20111911.2800.
QU Li-xin. Design of temperature adaptability for video processing in high-resolution remote sensing cameras[J]. Editorial Office of Optics and Precision Engineering, 2011,19(11): 2800-2804 DOI: 10.3788/OPE.20111911.2800.
对遥感相机成像电子学系统进行了温度适应性设计
以使其在温度大范围变化时或电路存在局部温差时均能实现高质量成像。分析了成像链路中的温度延时因素
提出了温度适应性设计方案和相关双采样(CDS)位置的初始精密对准方法
并进行了实验验证。该方法将CCD驱动器的输出经分压整形处理后作为双采样信号的时序基准
从而使双采样信号具备自适应跟踪能力;利用RC电路低通滤波特性对双采样初始位置进行精密对准
最后
在-35~75 ℃对改进后的遥感相机成像电子学系统进行了高低温实验。结果表明:双采样初始位置的延时调节精度达到了0.15 ns;在实验温度范围内
双采样偏离理想位置的延时最大值仅为0.72 ns
相机成像质量达到指标要求
满足空间应用需要。
To obtain high quality images for remote sensing cameras in a wider temperature change or in the temperature diversity caused by different circuit parts
an adaptive method for imaging electronics was proposed. The time-delay factors of temperature in the imaging system was analyzed
and design methods for temperature adaptability and the initial alignment of Corrlated Double Sampling(CDS) positions were given. Several experiments were performed to validate the feasibility of this method. By proposed method
the output of CCD driver was divided and was taken as a benchmark for the CDS signals
so that CDS signals can be used to track the driving signal adaptively. Then
initial positions of CDS were precisely aligned by using the lowpass filtering of a RC net. Finally
a temperature experiment by proposed compensating method was carried out for the imaging system of remote camera in -35~75 ℃. Results indicate that the position precision of CDS signals after adjusting is up to 0.2 ns. In the experimental temperature range
the maximal deviation of the CDS signals is only 0.72 ns as comparing with that of ideal one
which satisfies the indicators of image quality and the requirements of space application.
姚呈康, 李庆辉, 胡琳. 星载遥感相机像移分析[J]. 红外与激光工程, 2009, 38(5):901-904. YAO CH K, LI Q H, HU L. Analysis of image motion of satellite remote sensing camera[J]. Infrared and Laser Engineering, 2009, 38(5):901-904 . (in Chinese)[2] 王雪晶, 张健, 魏仲慧,等. 基于遥感相机模型的遥感图像彩色校正[J]. 红外与毫米波学报, 2002, 21(6):443-446. WANG X J, ZHANG J, WEI ZH H, et al.. Color correction for remote sensing images based on remote sensing camera model[J]. J. Infrared Millim. Waves, 2002, 21(6):443-446. (in Chinese)[3] 程芸, 李涛. CCD遥感相机信号处理电路降噪方法[J]. 航天返回与遥感, 2008, 29(4): 36-41. CHENG Y, LI T. The methods of reducing noise in signal processing circuit of CCD remote camera[J]. Spacecraft Recovery & Remote Sensing, 2008, 29(4): 36-41. (in Chinese)[4] 韩昌元. 高分辨力空间相机的光学系统研究[J]. 光学 精密工程, 2008, 16(11):2164-2172. HAN CH Y. Study on optical system of high resolution space camera[J]. Opt. Precision Eng., 2008, 16(11):2164-2172 . (in Chinese)[5] 阮宁娟, 苏云, 张科科,等. 空间TDICCD相机动态信噪比计算方法研究[J]. 中国空间科学技术, 2009, 6:15-20. RUAN N J, SU Y, ZHANG K K, et al.. Research on calculation method of dynamic SNR of TDICCD camera[J]. Chinese Space Science and Technolohy, 2009, 6:15-20 . (in Chinese)[6] 何家维, 何昕, 魏仲慧,等. 电子倍增CCD星相机的设计[J]. 光学 精密工程, 2010, 18(6): 1396-1403. HE J W, HE X, WEI ZH H, et al.. Design of EMCCD cameras for star detection[J]. Opt. Precision Eng., 2010, 18(6):1396-1403 . (in Chinese)[7] 王文华, 何彬, 韩双丽, 等. 星上CCD成像非均匀性实时校正[J]. 光学 精密工程, 2010, 18(6):1420-1428. WANG W H, HE B, HAN SH L, et al.. Real-time correction of nonuniformity in CCD imaging for remote sensing[J]. Opt. Precision Eng., 2010, 18(6):1420-1428 . (in Chinese)[8] 刘国媛, 李露瑶, 张伯珩, 等. CDS器件在TDICCD视频处理电路中的应用[J]. 光子学报, 2000, 29(1):82-86. LIU G Y, LI L Y, ZHANG B H, et al.. The application of device CDS indealing with the vedio signal[J]. Acta Photonica Sinica, 2000, 29(1):82-86 . (in Chinese)[9] 焦斌亮, 韩志学. 具有积分控制功能的CCD驱动电路设计[J]. 光学仪器, 2005, 27(3):51-54. JIAO B L, HAN ZH X. The design of CCD with integration control function based on CPLD[J]. Optical Instruments, 2005, 27(3):51-54 . (in Chinese)[10] 韩冬, 吴清文, 陈立恒, 等. 多姿态空间相机的热控系统设计与仿真[J]. 微计算机信息, 2009, 25(8)143-144. HAN D, WU Q W, CHEN L H, et al.. Design and simulation for thermal control system of attitude-varied space camera[J]. Control and Automation Publication Group, 2009, 25(8)143-144 . (in Chinese)
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