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张斧 《中国空间科学技术》1989,9(1):1-5
本文阐述了一种可行的面阵CCD 成象光谱仪的设计。它具有光谱范围宽(0.4μm~1.1μm)、高光谱分辨率(9.2nm)、密集的光谱波段数(76)、较大的地物扫描视场角(30°)等一系列引人注目的优点。 相似文献
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光学镜体用铍材及其尺寸稳定性 总被引:2,自引:0,他引:2
文中评述了铍材用作光学镜体的优越性及其发展状部况,讨论了影响铍镜尺寸稳定 因素及提高尺寸稳定性的可能途径。 相似文献
95.
准直式地球模拟器锗准直透镜光学系统的设计 总被引:5,自引:0,他引:5
从视场设计出发 ,分析了锗基片的厚度和光学材料吸收特性对光学设计的影响 ,介绍了红外光学系统优化设计的方法 ,给出了设计结果 ,并与国内同类地球模拟器的光学特性进行比较 ,说明准直式地球模拟器光学系统设计是成功的。 相似文献
96.
针对天宫空间站梦天载荷舱提出了采用一种含大开口的半硬壳铆接结构,实现了结构承载、载荷进出舱及载荷试验平台一体化设计。采用数值仿真的方法,考虑主动段飞行及地面整器起吊载荷等因素的影响,进行了结构强度迭代分析,识别结构的潜在薄弱环节,并开展针对性的局部结构验证试验。最后,设计并建立大开口结构的全工况静力试验平台,开展载荷舱整舱静力试验。数值计算与试验所得结果吻合较好,验证了载荷舱大开口结构设计的正确性。载荷舱结构的设计方法及验证思路可为其他飞行器结构提供参考。 相似文献
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Yong Yu Xiao-Fen Zhao Hao Luo Yin-Dun Mao Zheng-Hong Tang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(9):2320-2327
Geosynchronous Earth Orbit (GEO) satellites are widely used because of their unique characteristics of high-orbit and remaining permanently in the same area of the sky. Precise monitoring of GEO satellites can provide a key reference for the judgment of satellite operation status, the capture and identification of targets, and the analysis of collision warning. The observation using ground-based optical telescopes plays an important role in the field of monitoring GEO targets. Different from distant celestial bodies, there is a relative movement between the GEO target and the background reference stars, which makes the conventional observation method limited for long focal length telescopes. CCD drift-scan photoelectric technique is applied on monitoring GEO targets. In the case of parking the telescope, the good round images of the background reference stars and the GEO target at the same sky region can be obtained through the alternating observation of CCD drift-scan mode and CCD stare mode, so as to improve the precision of celestial positioning for the GEO target. Observation experiments of GEO targets were carried out with 1.56-meter telescope of Shanghai Astronomical Observatory. The results show that the application of CCD drift-scan photoelectric technique makes the precision of observing the GEO target reach the level of 0.2″, which gives full play to the advantage of the long focal length of the telescope. The effect of orbit improvement based on multi-pass of observations is obvious and the prediction precision of extrapolating to 72-h is in the order of several arc seconds in azimuth and elevation. 相似文献
100.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(5):1402-1413
The present paper reports coordinated ionospheric irregularity measurements at optical as well as GPS wavelengths. Optical measurements were obtained from Tiny Ionospheric Photometer (TIP) sensors installed onboard the Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) satellites. GPS radio signals were obtained from a dual frequency GPS receiver operational at Calcutta (22.58°N, 88.38°E geographic; geomagnetic dip: 32.96°; 13.00°N, 161.63°E geomagnetic) under the SCIntillation Network Decision Aid (SCINDA) program. Calcutta is located near the northern crest of Equatorial Ionization Anomaly (EIA) in the Indian longitude sector. The observations were conducted during the unusually low and prolonged solar minima period of 2008–2010. During this period, four cases of post-sunset GPS scintillation were observed from Calcutta. Among those cases, simultaneous fluctuations in GPS Carrier-to-Noise ratios (C/No) and measured radiances from TIP over a common ionospheric volume were observed only on February 2, 2008 and September 25, 2008. Fluctuations observed in measured radiances (maximum 0.95 Rayleigh) from TIP due to ionospheric irregularities were found to correspond well with C/N0 fluctuations on the GPS links observed from Calcutta, such effects being noted even during late evening hours of 21:00–22:00 LT from locations around 40° magnetic dip. These measurements indicate the existence of electron density irregularities of scale sizes varying over several decades from 135.6 nm to 300–400 m well beyond the northern crest of the EIA in the Indian longitude sector during late evening hours even in the unusually low solar activity conditions. 相似文献