Small Satellite Missions for Earth Observation New Developments and Trends /
This book was compiled from those contributions given at the 7th IAA Symposium on Small Satellites for Earth Observation, May 4-8, 2009, Berlin (IAA – International Academy of Astronautics) which are representative for the new developments and trends in the area of small satellites for Earth observa...
        Saved in:
      
    
                  | 企业作者: | |
|---|---|
| 其他作者: | , , | 
| 格式: | 电子 电子书 | 
| 语言: | English | 
| 出版: | 
      Berlin, Heidelberg :
        Springer Berlin Heidelberg : Imprint: Springer,
    
      2010.
     | 
| 版: | 1st ed. 2010. | 
| 主题: | |
| 在线阅读: | https://doi.org/10.1007/978-3-642-03501-2 | 
| 标签: | 
       添加标签    
     
      没有标签, 成为第一个标记此记录!
    | 
                书本目录: 
            
                  - New Earth Observation Missions
 - Overview on CNES Micro Satellites Missions: In Flight, Under Development and Next
 - Small Earth Observing Satellites Flying with Large Satellites in the A-Train
 - INTA?Sat-1 First Earth Observation Mission
 - VEN?S (Vegetation and Environment Monitoring on a New Micro Satellite)
 - The “Ulingo” Mid-Low Latitudes Observation (MILO) Mission
 - The Italian Precursor of an Operational Hyperspectral Imaging Mission
 - Earth Environment Missions
 - Space System “Radiomet” for GLONASS/GPS Navigation Signal Radio Occultation Monitoring of Lower Atmosphere and Ionosphere Based on Super-Small Satellites
 - The Study of Electromagnetic Parameters of Space Weather, Micro-Satellite “Chibis-M”
 - SEPSAT – A Nanosatellite to Observe Parameters of Space Weather
 - Small Satellite Constellations for Measurements of the Near-Earth Space Environment
 - Distributed Space Systems
 - Satellite Formation for a Next Generation Gravimetry Mission
 - EO Small Satellite Missions and Formation Flying
 - Relative Trajectory Design for Bistatic SAR Missions
 - Conceptual Design of the FAST-D Formation Flying Spacecraft
 - Earth Observation Using Japanese/Canadian Formation Flying Nanosatellites
 - A Bi/Multi-Static Microsatellite SAR Constellation
 - Mission Design of the Dutch-Chinese FAST Micro-Satellite Mission
 - University Satellites
 - SPRITE-SAT: A University Small Satellite for Observation of High-Altitude Luminous Events
 - SwissCube: The First Entirely-Built Swiss Student Satellite with an Earth Observation Payload
 - German Russian Education Satellite – Mission Outline and Objectives
 - University Microsatellites Equipped with an Optical System for Space Debris Monitoring
 - A First-MOVE in Satellite Development at the TU-München
 - Design of a Small Educational Satellite for the Italian High School Students: The EduSAT Project
 - Testing of Critical Pico-Satellite Systems on the Sounding Rocket Rexus-4
 - Laboratory Facility for Simulation and Verification of Formation Motion Control Algorithms
 - Asynchronous Parallel Reactive System for Intelligent Small Satellite on-Board Computing Systems
 - NanoSiGN – Nanosatellite for scientific interpretation of GNSS dual-frequency signals in the low Earth orbit
 - Instruments and Technologies
 - The Vegetation Instrument for the PROBA-V Mission
 - Software Defined LFM CW SAR Receiver for Microsatellites
 - PhytoMapper – Compact Hyperspectral Wide Field of View Instrument
 - Development of Spaceborne Small Hyperspectral sensor HSC-III for Micro Satellite
 - Towards a Miniaturized Photon Counting Laser Altimeter and Stereoscopic Camera Instrument Suite for Microsatellites
 - A Plan of Spaceborne ISAR Satellite Imaging System Aiming at Space Objects
 - Increasing the Data Volume Returned from Small Satellites
 - Integrated Design Based Plug-and-Play Small SAR Satellite Project
 - Attitude Control Systems
 - Star Sensor Development Based on the TUBSAT Experience
 - Small Sensors Big Choices
 - Robust and Fault Tolerant AOCS of the TET Satellite
 - Implementation of the T3?PS in the Delfi-n3Xt Satellite
 - A Novel AOCS Cold-Gas Micro-Propulsion System Design and Applications to Micro and Nano Satellites
 - Navigation
 - Navigation Needs for ESA’s Earth Observation Missions
 - Benefits of Galileo for Future Satellite Missions
 - Differential GPS: An Enabling Technology for Formation Flying Satellites
 - GPS-Based Relative Navigation in Earth Observation Missions Relying on Cooperative Satellites.
 



