GPS based onboard and onground orbit operations for small satellites

被引:14
作者
Jochim, EF [1 ]
Gill, E [1 ]
Montenbruck, O [1 ]
Kirschner, M [1 ]
机构
[1] German Aerosp Res Estab, German Space Operat Ctr, D-82234 Wesseling, Germany
关键词
D O I
10.1016/S0094-5765(97)00077-5
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In extension to common applications such as groundtrack displays and antenna steering, the SGP4 orbit model is proposed for operational orbit determination in small satellite missions. SGP4 is an analytical orbit model for Low-Earth orbiting satellites that is widely used for the propagation of NORAD twoline elements. Twoline elements may hence be generated completely independent of NORAD. Their use as exclusive source of orbital information simplifies the operations concept and reduces mission costs through the extensive use of existing low-cost mission support software. Due to small computer resource requirements of 8-10 kByte, the SGP4 model may also be applied for onboard orbit computations making use of e.g. a 80186 processor, thus ensuring full compatibility of ground-based and onboard operations. The proposed approach is particularly suited in combination with a spaceborne GPS receiver, were the C/A-code navigation solutions are treated as measurements that are adjusted in a least-squares sense using the SGP4 model. As consequence, inherent drawbacks of the pure navigation solutions such as data gaps and scatter as well as limited velocity accuracy are avoided, while the operational navigation activities are kept at a minimum. The feasibility of the concept is illustrated based on real GPS navigation data from the TOPEX/Poseidon and the MIR space station with an inherent data quality of 50-100 m. It is shown that 3 hours of data within a 4 day period are sufficient to keep the position error within 4 km, that is considered sufficient for most applications. (C) 1997 Published by Elsevier Science Ltd.
引用
收藏
页码:917 / 922
页数:6
相关论文
共 11 条
[1]   SOLUTION OF THE PROBLEM OF ARTIFICIAL SATELLITE THEORY WITHOUT DRAG [J].
BROUWER, D .
ASTRONOMICAL JOURNAL, 1959, 64 (09) :378-397
[2]  
GORDON RA, 1988, 2811 NASA
[3]  
GORDON RA, 1986, 860085 AIAA
[4]  
GUINN JR, 1996, P AAS AIAA SPAC FLIG
[5]  
HOOTS FR, 1988, 3 US AIR FORC AER DE
[6]   THE MOTION OF A CLOSE EARTH SATELLITE [J].
KOZAI, Y .
ASTRONOMICAL JOURNAL, 1959, 64 (09) :367-377
[7]  
KUGA HK, 1995, 9406 DLR GSOC IB
[8]  
Lane M., 1979, 2 AER DEF COMM
[9]  
MONTENBRUCK O, 1996, 20 ISTS 11 IAS GIF J
[10]  
SHOAN WC, 1996, P AIAA AAS ASTR C JU