期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Opto-mechanical-thermal integration analysis of Doppler asymmetric spatial heterodyne interferometer
1
作者 WANG Jin-jiang JIANG Lun +3 位作者 TONG Shou-feng PEI Hui-yi CUI Yong GUO Ming-hang 《中国光学(中英文)》 EI CAS CSCD 北大核心 2024年第6期1489-1511,共23页
In order to improve the detection accuracy of Doppler asymmetric spatial heterodyne(DASH)interferometer in harsh temperatures,an opto-mechanical-thermal integration analysis is carried out.Firstly,the correlation betw... In order to improve the detection accuracy of Doppler asymmetric spatial heterodyne(DASH)interferometer in harsh temperatures,an opto-mechanical-thermal integration analysis is carried out.Firstly,the correlation between the interference phase and temperature is established according to the working principle and the phase algorithm of the interferometer.Secondly,the optical mechanical thermal analysis model and thermal deformation data acquisition model are designed.The deformation data of the interference module and the imaging optical system at different temperatures are given by temperature load simulation analysis,and the phase error caused by thermal deformation is obtained by fitting.Finally,based on the wind speed error caused by thermal deformation of each component,a reasonable temperature control scheme is proposed.The results show that the interference module occupies the main cause,the temperature must be controlled within(20±0.05)℃,and the temperature control should be carried out for the temperature sensitive parts,and the wind speed error caused by the part is 3.8 m/s.The thermal drift between the magnification of the imaging optical system and the thermal drift of the relative position between the imaging optical system and the detector should occupy the secondary cause,which should be controlled within(20±2)℃,and the wind speed error caused by the part is 3.05 m/s.In summary,the wind measurement error caused by interference module,imaging optical system,and the relative position between the imaging optical system and the detector can be controlled within 6.85 m/s.The analysis and temperature control schemes presented in this paper can provide theoretical basis for DASH interferometer engineering applications. 展开更多
关键词 Doppler asymmetric spatial heterodyne interferometer interference module imaging optical system opto-mechanical thermal integration analysis phase error temperature control
在线阅读 下载PDF
557.7 nm波段地基探测风场的多普勒非对称空间外差干涉仪研制 被引量:2
2
作者 刘欢 江伦 +4 位作者 张晓菲 付芸 宋延嵩 佟首峰 刘显著 《中国光学(中英文)》 EI CAS CSCD 北大核心 2023年第5期1227-1242,共16页
为探测中层大气风场信息,研制了一台具有热补偿特性的大集光率(AΩ)、高信噪比(Signal-to-Noise Ratio,SNR)的地基多普勒非对称空间外差(Doppler Asymmetric Spatial Heterodyne,DASH)干涉仪。针对557.7 nm的氧原子气辉谱线,制定了DASH... 为探测中层大气风场信息,研制了一台具有热补偿特性的大集光率(AΩ)、高信噪比(Signal-to-Noise Ratio,SNR)的地基多普勒非对称空间外差(Doppler Asymmetric Spatial Heterodyne,DASH)干涉仪。针对557.7 nm的氧原子气辉谱线,制定了DASH干涉仪的详细参数和指标。系统采用扩视场和消热差设计,半视场角达到2.815°,集光率为0.09525 cm^(2)sr,系统信噪比在113.75左右,经过热补偿设计后,最终光程差随温度变化(dΔd0/dT)的数值仅为2.224×10^(−7)mm/°C。根据相应参数设计优化了光学系统,前置光学系统和探测器光学系统分别采用像方远心和双远心结构,各项指标均满足探测要求。为验证设计结果,搭建了地基DASH干涉仪实验平台,进行室内以及地基室外实验,最终得到了明显的干涉条纹。上述结果证明DASH干涉仪的系统设计是合理的,系统的信噪比和集光率满足检测要求。 展开更多
关键词 地基DASH干涉仪 557.7 nm氧原子气辉谱线 光学设计 信噪比
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部