Research on Blackout Measurement and Communication of Reentry Vehicle

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Abstract:

For measurement and communication interrupt between earth station and reentry vehicle in blackout area, we analyze electromagnetic environment characteristic of plasma sheath. Methods of changing electrical characteristic of plasma medium or changing measurement and communication equipments are researched based on the analysis. Also technology of trajectory reconstruction is presented by using limited measurement data of target. The paper introduces technology status of measurement and communication for blackout area reentry vehicle. Also we analyze properties of common methods and propose key questions to research. It provides reference for related researchers.

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Advanced Materials Research (Volumes 945-949)

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2248-2253

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] D.A. Batchelor, M. Beck, J. Manickam, et al: Phys. Sci. Tech., 9 (2007), p.312.

Google Scholar

[2] I.H. Hutchinson: Principle of plasma diagnostics, London, Cambridge University Press (1990).

Google Scholar

[3] Orlando Auciello, Daniel L. Flamn: Plasma diagnosis: discharge parameter and chemistry, Beijing, Science Press (2001).

Google Scholar

[4] Zeng Zhaoxian, Wang Shijin, Zeng Li: Shanghai Space, 5 (2006), pp.41-45 (in Chinese).

Google Scholar

[5] A. Qayyum, Shaista Ieb, M.A. Naveed: Journal of Quantitative Spectroscopy & Radiative Transfer (2007).

Google Scholar

[6] St. Kolev, H. Schlüter, A. Schlüter, Kh. Tarnev: Plasma Sources Sci. Technol., 15 (2006), pp.744-756.

DOI: 10.1088/0963-0252/15/4/019

Google Scholar

[7] S. Iordanova, I. Koleva: Spectrochimica Acta Part B, 62 (2007), pp.344-356.

Google Scholar

[8] D.L. Tang: IEEE Trans. Plasma Sci., 31 (2003), p.405.

Google Scholar

[9] Z.H. Jiang, X.W. Hu: Chin. Phys. Lett., 23 (2006), p.1238.

Google Scholar

[10] Y. He: Plasma Sci. and Techn., 10 (2008), p.180.

Google Scholar

[11] T.J. M. Boyd, J.J. Sanderson: The physics of plasmas, New York, Cambridge Press (2004).

Google Scholar

[12] Wu Bin, Lin Lie, Wu Chengkang: High Power Laser & Particle Beams, 17(2) (2005), pp.225-228 (in Chinese).

Google Scholar

[13] Chen Fangyun: Satellite measurement and control handbook, Beijing, Science Press (1992), pp.211-212 (in Chinese).

Google Scholar

[14] G.V. Candler, R. W: Maccormack. AIAA 1988-0511 (1988).

Google Scholar

[15] S.V. Nazarenko, A.C. Newell, V.E. Zakharov: Phys. Plasmas, 1(9) (1994): 46-49.

Google Scholar

[16] A.C. Newell, V.E. Zakharov: NASA, AFOSR, FA9550-04-1-0090 (2007).

Google Scholar

[17] R.J. Evans, G.C. Goodwin, R.A. Feik, C. Martin, R. Lozano-Leal: Proceedings of 7th IFAC Symposium on Identification and System Parameter Estimation (1985), pp.487-492.

DOI: 10.1016/s1474-6670(17)60607-4

Google Scholar

[18] R.E. Maine, K.W. Iliff: Proceedings of 6th IFAC Symposium on Identification and System Parameter Estimation (1982), 1139-1144.

Google Scholar

[19] Li Naihong, Wu Yaohua, Yang Di, Huang Wenhu: Journal of Astronautics, 14(4) (1993), pp.49-55. (in Chinese).

Google Scholar

[20] Wang Qing, He Zhengchun, Fang Fang, Wan Zongguo: Journal of Astronautics, 25(6) (2004), pp.595-600. (in Chinese).

Google Scholar