Minimizing Proton Displacement Damage Dose During Electric Orbit Raising of Satellites
2016; American Institute of Aeronautics and Astronautics; Volume: 39; Issue: 4 Linguagem: Inglês
10.2514/1.g000503
ISSN1533-3884
AutoresAtri Dutta, N. Jeremy Kasdin, Edgar Choueiri, P. Francken,
Tópico(s)Advanced Battery Technologies Research
ResumoNo AccessEngineering NoteMinimizing Proton Displacement Damage Dose During Electric Orbit Raising of SatellitesAtri Dutta, N. Jeremy Kasdin, Edgar Choueiri and Philippe FranckenAtri DuttaPrinceton University, Princeton, New Jersey 08544, N. Jeremy KasdinPrinceton University, Princeton, New Jersey 08544, Edgar ChoueiriPrinceton University, Princeton, New Jersey 08544 and Philippe FranckenSES S.A., 6815 Betzdorf, LuxembourgPublished Online:8 Jan 2016https://doi.org/10.2514/1.G000503SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookTwitterLinked InRedditEmail About References [1] Smits F., "The Degradation of Solar Cells Under Van Allen Radiation," IEEE Transactions on Nuclear Science, Vol. 10, No. 1, 1963, pp. 88–96. doi:https://doi.org/10.1109/TNS.1963.4323248 IETNAE 0018-9499 CrossrefGoogle Scholar[2] Flanagan P. F., Horsewood J. L. and Pines S., "Precision Orbit Raising Trajectories," 11th Electric Propulsion Conference, AIAA Paper 1975-0354, March 1975. LinkGoogle Scholar[3] Dailey C. and Lovberg R., "Shuttle to GEO Propulsion Trade Offs," 18th Joint Propulsion Conference, AIAA Paper 1982-1245, June 1982. LinkGoogle Scholar[4] Redding D., "Avoiding the Van Allen Belt in Low-Thrust Transfer To Geosynchronous Orbit," 21st Aerospace Sciences Meeting, AIAA Paper 1983-0195, Jan. 1983. Google Scholar[5] Ennix K. A., Dickey M. R., Klucz R. S. and Matuszak L. W., "Electric Vehicle Analyzer," 21st International Electric Propulsion Conference, AIAA Paper 1990-2573, July 1990. LinkGoogle Scholar[6] Free B., "High Altitude Orbit Raising with On-Board Electric Power," Proceedings of the International Electric Propulsion Conference, IEPC Paper 1993-205, Electric Rocket Propulsion Soc., Fairview Park, OH, Sept. 1993, pp. 1861–1877. Google Scholar[7] Fitzgerald A., "The Effect of Solar Array Degradation in Orbit-Raising with Electric Propulsion," Proceedings of the International Electric Propulsion Conference, IEPC Paper 1993-207, Electric Rocket Propulsion Soc., Fairview Park, OH, Sept. 1993, pp. 1889–1895. Google Scholar[8] Biagioni L., "Evolutionary Optimization of Launch Vehicle Electric Propulsion Integration for GEO Missions," 36th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, AIAA Paper 2000-3418, July 2000. LinkGoogle Scholar[9] Oleson S. R. and Myers R. M., "Launch Vehicle and Power Level Impacts on Electric GEO Insertion," 32nd Joint Propulsion Conference and Exhibit, AIAA Paper 1996-2978, July 1996. LinkGoogle Scholar[10] Byers D. C. and Dankanich J. W., "Geosynchronous-Earth-Orbit Communication Satellite Deliveries with Integrated Electric Propulsion," Journal of Propulsion and Power, Vol. 24, No. 6, Nov.–Dec. 2008, pp. 1369–1375. doi:https://doi.org/10.2514/1.35322 JPPOEL 0748-4658 LinkGoogle Scholar[11] Duchemin O. B., Caratge A., Cornu N., Sannino J.-M., Lassoudière F. and Lorand A., "Ariane 5-ME and Electric Propulsion: GEO Insertion Options," 47th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, AIAA Paper 2011-6084, July–Aug. 2011. LinkGoogle Scholar[12] Dutta A., Libraro P., Kasdin N. J. and Choueiri E., "A Direct Optimization Based Tool to Determine Orbit-Raising Trajectories to GEO for All-Electric Telecommunication Satellites," AIAA/AAS Astrodynamics Specialist Conference, AIAA Paper 2012-4589, Aug. 2012. LinkGoogle Scholar[13] Kluever C. A., "Optimal Geostationary Orbit Transfers Using Onboard Chemical-Electric Propulsion," Journal of Spacecraft and Rockets, Vol. 49, No. 6, 2012, pp. 1174–1182. doi:https://doi.org/10.2514/1.A32213 JSCRAG 0022-4650 LinkGoogle Scholar[14] Dutta A., Libraro P., Kasdin N. J. and Choueiri E., "Minimizing Total Radiation Fluence During Time-Constrained Electric Orbit-Raising," Proceedings of the International Symposium on Space Flight Dynamics, Pasadena, CA, Nov. 2012. Google Scholar[15] Messenger S. R., Xapsos M. A., Burke E. A., Walters R. J. and Summers G. P., "Proton Displacement Damage and Ionizing Dose for Shielded Devices in Space," IEEE Transactions on Nuclear Science, Vol. 44, No. 6, Dec. 1997, pp. 2169–2173. doi:https://doi.org/10.1109/23.659032 IETNAE 0018-9499 CrossrefGoogle Scholar[16] Jun I., Xapsos M., Messenger S. R., Burke E. A., Walters R. J., Summers G. P. and Jordan T., "Proton Nonionizing Energy Loss (NIEL) for Device Applications," IEEE Transactions on Nuclear Science, Vol. 50, No. 6, Dec. 2003, pp. 1891–1895. doi:https://doi.org/10.1109/TNS.2003.821380 IETNAE 0018-9499 CrossrefGoogle Scholar[17] Messenger S. R., Jackson E. M., Warner J. H. and Walters R. J., "SCREAM: A New Code for Solar Cell Degradation Prediction Using the Displacement Damage Dose Approach," Proceedings of the 35th IEEE Photovoltaics Conference, IEEE Publ., Piscataway, NJ, June 2012, pp. 1106–1111. doi:https://doi.org/10.1109/PVSC.2010.5614713. Google Scholar[18] Guo C., "Modeling Earth's Radiation Belts to Find Minimal-Radiation Satellite Trajectories," Junior Paper, Physics Dept., Princeton Univ., Princeton, NJ. Google Scholar[19] Pisacane V. L., The Space Environment and Its Effects on Space Systems, Education Series, AIAA, Reston, VA, 2008, pp. 77–89. CrossrefGoogle Scholar[20] McIlwain C. E., "Coordinates for Mapping the Distribution of Magnetically Charged Particles," Journal of Geophysical Research, Vol. 66, No. 11, Nov. 1961, pp. 3681–3691. doi:https://doi.org/10.1029/JZ066i011p03681 JGREA2 0148-0227 CrossrefGoogle Scholar[21] Jordan C. E., "NASA Radiation Belt Models AP-8 and AE-8," Radex Rept. 1 GL-TR-89-0267, Bedford, MA, Sept. 1989. Google Scholar[22] Conway B. A. (ed.), Spacecraft Trajectory Optimization: Conway, Techniques and Technology, Cambridge Univ. Press, Cambridge, MA, 2010. CrossrefGoogle Scholar[23] Wachter A. and Biegler L. T., "On the Implementation of an Interior-Point Filter Line-Search Algorithm for Large-Scale Nonlinear Programming," Mathematical Programming, Vol. 106, No. 1, 2006, pp. 25–57. doi:https://doi.org/10.1007/s10107-004-0559-y MHPGA4 1436-4646 CrossrefGoogle Scholar[24] Vanderbei R. J., "LOQO: An Interior Point Code for Quadratic Programming," Optimization Methods and Software, Vol. 11, Nos. 1–4, 1999, pp. 451–484. CrossrefGoogle Scholar[25] Fourer R., Gay D. and Kernighan B., AMPL: A Modeling Language for Mathematical Programming, Brooks/Cole Publ., 2003. Google Scholar Previous article Next article
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