1Massonnet D. Capabilities and Limitation of the Interferometric Cartwheel[J]. IEEETrans. onGeo. and Remote Sensing, 2001,39(3):506-520. 被引量:1
2Massonnet D. The Interferometric Cartwheel, a Constellation of Low Cost Receiving Satellites to Produce Radar Images that Can Be Coherently Combined[J]. Int J. of Remote Sens, in press. 被引量:1
3Krieger G. Comparison of the Interferometric Performance for Spacebome Parasitic SAR Confisuration[ J ]. EUSAR 2002,4 - 6. 被引量:1
4Fiedler H. Analysis of Bistatic Configurations for Spacebome SAR Interferometry[J]. EUSAR 2002. 被引量:1
5[1]Luu K M, Martin M, et al. University nanosatellite distributed satellite capabilities to support TechSat 21 [A]. AIAA/USU Small Satellite Conference Logan UT[C]. USA: SC99-Ⅲ-3,1999. 被引量:1
6[2]Sedwick R J, Kong E M C, Miller D W. Exploiting orbital dynamics and micropropulsion for aperture synthesis using distributed satellite systems: applications to techsat 21 [ R ]. USA: AIAA, A9845988,1998. 被引量:1
7[3]Skinner J M, Tollefson M V, Rosenstock J C. Cooperative intelligent agents for distributed satellite systems [ R]. USA: AIAA, A9845918,1998. 被引量:1
8[4]Das A, Cobb R. TechSat 21-Space missions using collaborating constellations of satellites[A]. 12th AIAA/USU Conference on Small Satellites[ C]. USA: SSC98-Ⅵ-1,1998. 被引量:1
9[5]Zetocha P. Satellite cluster command and control[ A]. IEEE Aerospace conference proceedings[ C]. Big Sky, MT: IEEE, 2000.49 - 54. 被引量:1
10[6]Zetocha P A, Brito M. Development of a testbed for distributed satellite command and control [ A ]. IEEE Aerospace Conference Proceedings[C]. Big Sky, MT: IEEE, 2001.2-609-2-614. 被引量:1