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Study the Space Debris Impact in the Early Stages of the Nano-Satellite Design


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Committee on Space Debris, National Research Council (1995), ORBITAL DEBRIS: A Technical Assessment, National Academies Press.Search in Google Scholar

International Space University, Florida Institute of Technology. (2012), Operations and Service Infrastructure for Space Melbourne, Florida, USA, SSP.Search in Google Scholar

Inter-Agency Space Debris Coordination Committee (IADC) Website, Available on http://www.iadc-online.org/index.cgi?item=homeSearch in Google Scholar

Inter-Agency Space Debris Coordination Committee, (2007) IADC Space Debris Mitigation Guidelines, Revision 1, IADC-02-01.Search in Google Scholar

Mahdi M. Chessab (2015) Orbit Design and Simulation for KufaSat Nano-Satellite, Artificial Satellites Journal, Vol. 50, No. 4.10.1515/arsa-2015-0013Search in Google Scholar

Mahdi, M. C. (2014) Design and Implementation of an Effective Electrical Power System for Nano-Satellite, International Journal of Scientific & Engineering Research, Volume 5, Issue 5.Search in Google Scholar

NASA JSC. (January 2014) Orbital Debris Quarterly News, Volume 18, Issue 1.Search in Google Scholar

NASA Orbital Debris program Office Orbital Debris Frequently Asked Questions, Available on http://orbitaldebris.jsc.nasa.gov/faq.html#3Search in Google Scholar

NASA (2012), Debris Assessment Software User’s Guide Version 2.0 Lyndon B. Johnson Space Center, Houston, Texas 77058.Search in Google Scholar

National Academy of Sciences. (2011) Limiting Future Collision Risk to Spacecraft: An Assessment of NASA’s Meteoroid and Orbital Debris Programs, National Academies Press, Washington, D.C.Search in Google Scholar

eISSN:
2083-6104
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Geosciences, other