A Study on Same-Beam Interferometry in Deep Space

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Abstract:

Same-beam interferometry (SBI) has a wide range of applications and prospects in collocate geostationary satellites, space rendezvous and docking, landers and rovers positioning. The paper introduces the basic principles, underlying processing algorithms, ambiguity resolution solving, process flow comprehensively and systematically. Then use FX-related processing algorithms and integer ambiguity solution method step by step to process signals, draw process flowchart.

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Periodical:

Advanced Materials Research (Volumes 989-994)

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4014-4018

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Online since:

July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Juan Hu, Wenquan Chen. Position Determination for Co-located Geostationary Satellites[J]. Electronic Sci & Tech, 2012. 25(7).

Google Scholar

[2] Srinivasamurthy K N. Strategy Analysis for Collocation of INSAT-2 Satellites[J]. Acta Astronautica, 2002, 50(6): 343-349.

DOI: 10.1016/s0094-5765(01)00183-7

Google Scholar

[3] Dongxu Li, Zhi Li. The Technology of Autonomous Rendezvous and Docking of spacecraft [M]. NUDT Press, (2009).

Google Scholar

[4] Wenquan Chen, Jianwei Wu. Relative Position Localization Technology for Geostationary Orbit Collocation Satellites [J]. Journal of Chendu Electromechanical College, 2010, 9. (13): 3.

Google Scholar

[5] Haitao Li, Huan Zhou. Development of Radio Interferometry and Its Prospect in Deep Space Navigation[J]. Journal of Spacecraft TT&C Technology, 2013, 32(6).

Google Scholar

[6] Lue Chen, Geshi Tang, etc. Multi-frequency Same-beam Interferometry on General TT&C Signal[J]. Chinese Space Science and Technology, 2012, 42(6).

Google Scholar

[7] Thompson A R, Moran J M, Swenson G W. Interferometry and synthesis in radio astronomy[M]. Florida: Krieger Publishing Company, (1994).

Google Scholar

[8] Qinghui Liu, Ming Chen , etc. Relative Position Determination of a Lunar Rover Based on Multi-frequency Same Beam Interferometry [J].Science China: Phys, Mech & Astron, 2009, 39(10):1410—1418.

Google Scholar

[9] Shaowu Chen, Guangliang Dong. Research and Verification of Differential Phase Delay Measurement Model of Same Beam Interferometry[J]. Journal of Astronautics, 2013, 32(6): 68—74.

Google Scholar

[10] Chengbin Zhao, Xiaomin Hou. An Introduction to Application of High Accuracy Interferometric Techniques in Deep Space Navigation[J]. Global Positioning System, 2011(2).

Google Scholar