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81.
基本形式的像方扫描光学系统依然需要复杂的二维回转机构带动成像镜组做二维扫描,所以二维回转机构需要承担较大载荷。分析了基本形式的像方扫描光学系统形式,并在基本形式基础上加入摆镜,只通过二维摆镜的旋转达到扫描像面的目的,大大减小二维回转机构载荷,提高扫描速度,简化了系统结构,减小了系统体积。加入摆镜后的光学系统除具有基本形式像方扫描光学系统的性质外,还有了新的限制条件,对带摆镜的像方扫描光学系统进行了分析,提出了设计条件及设计方法,并设计出具有较大视场的像方扫描光学系统。  相似文献   
82.
高速摄像是光学测量的重要手段。分析了高速摄像三维图像分析技术的处理过程,重点讨论了像机标定、自动目标检测与跟踪技术、多目标匹配技术和三维姿态测量技术等关键环节所面临的问题及解决方法,并以无人机回收测量系统为例说明了高速摄像三维图像分析技术在无人机位姿参数测量中的应用,对构建高速摄像测量系统提供了参考。  相似文献   
83.
结合飞秒激光超强、超快、超稳、宽频、广谱、相干的特点,介绍了其相应的技术应用情况:应用超快特性的微观物理、生物、化学、信息、通信等;以超强应用为对象的材料加工、制备、电子对撞加速器、受控核聚变等;以超稳特性应用为对象的光频测量、长距离测量、光钟等,并简介了光钟。  相似文献   
84.
介绍了离轴三反光学系统初始结构的设计方法,并用该方法进行离轴三反光学系统设计。用ZEMAX软件设计了一个焦距为1 000mm,F数为10,垂直轨道方向视场为±4.0°,沿轨道方向为6.0°和6.5°的光学系统。结果表明,该光学系统在空间频率71线对/mm处,调制传递函数均大于0.4,且三镜为球面,具有易于制造装调等优点。  相似文献   
85.
环境与灾害监测目标具有多样性、定量化要求高等特点,非常适合光学载荷发挥其信息量丰富、种类多、精度高等方面的优势。在国际上,此类光学载荷发展迅速,新技术不断涌现,值得学习借鉴。文章重点阐述了应用于环境与灾害监测民用卫星的光学有效载荷的发展现状和发展趋势,为中国第二代"环境与灾害监测预报小卫星星座"的相关光学有效载荷发展提供参考。  相似文献   
86.
国外光学遥感成像系统仿真软件发展综述与思考   总被引:1,自引:0,他引:1  
光学遥感系统仿真是一个复杂的系统工程,涉及多个交叉学科领域。遥感成像仿真需要严格按照成像的物理过程进行模拟,对各关键环节建立精确的模型,设计标准化的技术流程,最终完成基于地学、光学、大气科学、电子学、传感器设计等多学科和多技术领域交叉融合的系统集成。文章通过广泛调研国外光学遥感仿真软件的应用和发展现状,比较3种典型仿真软件的设计框架和技术路线,分析其发展趋势,为自主研发的光学遥感仿真模拟软件提供借鉴。  相似文献   
87.
Over 60% clocks on board of the GPS satellites are working longer than their designed life. Therefore realizing their stabilities in a long time scales is essential to GPS navigation and positioning plus IGS time scale maintaining. IGS clock products from 2001 to 2010 are used to analyze the GPS satellite clock qualities such as frequency stabilities and clock noise level. We find out that for the clocks of Block IIA satellites the frequency stabilities and clock noise are 10 times worse than that of the Block IIR and IIR-M satellites. Moreover, the linear relationships between frequency stabilities and clock residuals have been deduced with an accuracy of better than 0.02 ns. Specially, it is noticed that the clock of the PRN27 is instable and the relationship between the frequency stability and residuals is at least a quadratic curve. Therefore, we suggested that GPS satellite clocks should be weighted by their quality levels in application, and the observations of the Block IIA should not be used for real-time positioning which required precision better than one meter.  相似文献   
88.
将非传统激光束激光选区熔化(SLM)作为调研对象,介绍了非传统激光束整形原理及其SLM设备情况,以椭圆高斯光、平顶光、反高斯光和细光斑为分类,总结了不同激光形状类型在生产过程中对制品热历史、微观组织和缺陷的影响.对集成光束整形器件和非传统激光SLM打印研究后发现,椭圆形高斯光打印由于改变了光束椭圆度可使制品在不同部位具...  相似文献   
89.
小卫星高分辨率成像系统   总被引:1,自引:0,他引:1  
林来兴 《上海航天》2011,28(6):54-57
对小卫星对地观测高分辨率成像系统进行了综述。介绍了国内外有极高分辨率(0.5~1.0m)、高分辨率(1.8~2.5m)和中高分辨率(4-10m)小卫星光学成像系统的性能,并与合成孔径雷达(SAR)成像系统进行了比较。给出了小卫星光学成像系统、SAR高分辨率成像系统和卫星平台的关键技术。讨论了未来小卫星及其高分辨率成像系统技术的发展趋势。  相似文献   
90.
Under ESA contract an industrial consortium including Aboa Space Research Oy (ASRO), the Astronomical Institute of the University of Bern (AIUB), and the Dutch National Aerospace Laboratory (NLR), proposed the observation concept, developed a suitable sensor architecture, and assessed the performance of a space-based optical (SBO) telescope in 2005. The goal of the SBO study was to analyse how the existing knowledge gap in the space debris population in the millimetre and centimetre regime may be closed by means of a passive optical instrument. The SBO instrument was requested to provide statistical information on the space debris population in terms of number of objects and size distribution. The SBO instrument was considered to be a cost-efficient with 20 cm aperture and 6° field-of-view and having flexible integration requirements. It should be possible to integrate the SBO instrument easily as a secondary payload on satellites launched into low-Earth orbits (LEO), or into geostationary orbit (GEO). Thus the selected mission concept only allowed for fix-mounted telescopes, and the pointing direction could be requested freely. Since 2007 ESA focuses space surveillance and tracking activities in the Space Situational Awareness (SSA) preparatory program. Ground-based radars and optical telescopes are studied for the build-up and maintenance of a catalogue of objects. In this paper we analyse how the proposed SBO architecture could contribute to the space surveillance tasks survey and tracking. We assume that the SBO instrumentation is placed into a circular sun-synchronous orbit at 800 km altitude. We discuss the observation conditions of objects at higher altitude, and select an orbit close to the terminator plane. A pointing of the sensor orthogonal to the orbital plane with optimal elevation slightly in positive direction (0° and +5°) is found optimal for accessing the entire GEO regime within one day, implying a very good coverage of controlled objects in GEO, too. Simulations using ESA’s Program for Radar and Optical Observation Forecasting (PROOF) in the version 2005 and a GEO reference population extracted from DISCOS revealed that the proposed pointing scenario provides low phase angles together with low angular velocities of the objects crossing the field-of-view. Radiometric simulations show that the optimal exposure time is 1–2 s, and that spherical objects in GEO with a diameter of below 1 m can be detected. The GEO population can be covered under proper illumination nearly completely, but seasonal drops of the coverage are possible. Subsequent observations of objects are on average at least every 1.5 days, not exceeding 3 days at maximum. A single observation arc spans 3° to 5° on average. Using a simulation environment that connects PROOF to AIUB’s program system CelMech we verify the consistency of the initial orbit determination for five selected test objects on subsequent days as a function of realistic astrometric noise levels. The initial orbit determination is possible. We define requirements for a correlator process essential for catalogue build-up and maintenance. Each single observation should provide an astrometric accuracy of at least 1”–1.5” so that the initially determined orbits are consistent within a few hundred kilometres for the semi-major axis, 0.01 for the eccentricity, and 0.1° for the inclination.  相似文献   
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