红外光谱成像系统、光场成像系统、光学显微系统、偏振干涉成像系统、复眼成像系统、环带式全景光学系统、多尺度成像系统及头戴式增强显示系统等光学系统中,通常需要中继光学系统来实现光路衔接、配曈、偏转等。研究了现有中继光学系...红外光谱成像系统、光场成像系统、光学显微系统、偏振干涉成像系统、复眼成像系统、环带式全景光学系统、多尺度成像系统及头戴式增强显示系统等光学系统中,通常需要中继光学系统来实现光路衔接、配曈、偏转等。研究了现有中继光学系统结构,介绍了光阑前置即具有实入曈的像方远心离轴三反光学系统的设计方法及自由曲面的描述方法,完成了满足设计参数的具有实入瞳的远心中继光学系统仿真设计,系统各镜采用XY多项式描述的自由曲面离轴三反光学系统结构。CODEV仿真设计结果表明,在工作谱段0.4~5.0μm、焦距400 mm、F数3、视场角2ω=8°下,系统MTF(Modulation Transfer Function)接近于衍射极限,畸变小于1%,成像质量良好。展开更多
The goals of engineering and scientific missions for Chang'E-2 lunar satellite require high detection sensitivity and large imaging dynamic range for the onboard CCD cameras. The TDI CCD image sensor was adopted for ...The goals of engineering and scientific missions for Chang'E-2 lunar satellite require high detection sensitivity and large imaging dynamic range for the onboard CCD cameras. The TDI CCD image sensor was adopted for the two linear CCD stereo cameras for the first time in the lunar reconnaissance of the world. The design argumentation is described in this paper. The analysis shows that the imagers meet the mission requirements. The satellite was launched on 1 October 2010 at zero window. The cameras obtained images of 7 m resolution on the 100 km orbit for the first time on 24 October 2010, and operated once again on 27 October 2010 to take stereo images of the Sinus Iridum with the resolution better than 1.5 m. On the near-moon-arc of 15 kmxl00 km elliptical orbit, the images are very clear and rich of grey scales, indicating successful completion of the Chang'E-2 engineering mission. At the present the cameras are acquiring the full lunar surface stereo images with 7 m resolution on the 100 km circular orbit to complete their scientific mission.展开更多
文摘红外光谱成像系统、光场成像系统、光学显微系统、偏振干涉成像系统、复眼成像系统、环带式全景光学系统、多尺度成像系统及头戴式增强显示系统等光学系统中,通常需要中继光学系统来实现光路衔接、配曈、偏转等。研究了现有中继光学系统结构,介绍了光阑前置即具有实入曈的像方远心离轴三反光学系统的设计方法及自由曲面的描述方法,完成了满足设计参数的具有实入瞳的远心中继光学系统仿真设计,系统各镜采用XY多项式描述的自由曲面离轴三反光学系统结构。CODEV仿真设计结果表明,在工作谱段0.4~5.0μm、焦距400 mm、F数3、视场角2ω=8°下,系统MTF(Modulation Transfer Function)接近于衍射极限,畸变小于1%,成像质量良好。
文摘The goals of engineering and scientific missions for Chang'E-2 lunar satellite require high detection sensitivity and large imaging dynamic range for the onboard CCD cameras. The TDI CCD image sensor was adopted for the two linear CCD stereo cameras for the first time in the lunar reconnaissance of the world. The design argumentation is described in this paper. The analysis shows that the imagers meet the mission requirements. The satellite was launched on 1 October 2010 at zero window. The cameras obtained images of 7 m resolution on the 100 km orbit for the first time on 24 October 2010, and operated once again on 27 October 2010 to take stereo images of the Sinus Iridum with the resolution better than 1.5 m. On the near-moon-arc of 15 kmxl00 km elliptical orbit, the images are very clear and rich of grey scales, indicating successful completion of the Chang'E-2 engineering mission. At the present the cameras are acquiring the full lunar surface stereo images with 7 m resolution on the 100 km circular orbit to complete their scientific mission.