This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Trade Studies for NASA N3-X Turboelectric Distributed Propulsion System Electrical Power System Architecture

Journal Article
2012-01-2163
ISSN: 1946-3855, e-ISSN: 1946-3901
Published October 22, 2012 by SAE International in United States
Trade Studies for NASA N3-X Turboelectric Distributed Propulsion System Electrical Power System Architecture
Sector:
Citation: Armstrong, M., Ross, C., Blackwelder, M., and Rajashekara, K., "Trade Studies for NASA N3-X Turboelectric Distributed Propulsion System Electrical Power System Architecture," SAE Int. J. Aerosp. 5(2):325-336, 2012, https://doi.org/10.4271/2012-01-2163.
Language: English

References

  1. Luongo, C.A. Masson, P. Nam, T. Mavris, D. Kim, H.D. Brown, G.V. Waters, D. Hall, D. Next generation more electric aircraft: A potential application for HTS superconductors IEEE Transactions on Applied Superconductivity 19 3 1055 1068 2009
  2. Brown, G.V. Weights and Efficiencies of Electric Components of Turboelectric Aircraft Propulsion System 49 th AIAA Aerospace Sciences Meeting Orlando FL January 4 7 2011
  3. Kim, H.D. Saunders, J.D. Embedded Wing Propulsion Conceptual Study NASA/TM - 2003-212696 Glenn Research Center Cleveland, OH November 2003
  4. Felder, J.L. Kim, H.D. Brown, G.V. Turboelectric Distributed Propulsion Engine Cycle Analysis for Hybrid-Wing-Body Aircraft 47 th AIAA Aerospace Sciences Meeting Orlando FL January 5 8 2009
  5. Felder, J.L. Brown, G.V. Kim, H.D. Chu, J. Turboelectric Distributed Propulsion in a Hybrid Wing Body Aircraft Proceeding of the 20th International Society for Airbreathing Engines Gothenburg; Sweden 12 16 Sep. 2011
  6. Federal Aviation Administration FAR Sec. 33.76 Airworthiness Standards: Aircraft Engines, Bird Ingestion Ammendment 33-24 11 5 2007 http://rgl.faa.gov/Regulatory_and_Guidance_Library
  7. Maragakis, I. Bird Population Trends and their Impact on Aviation Safety 1999-2008 European Aviation Safety Agency, Safety Analysis and Research Department Executive Directorate January 2009
  8. Ieda, M. Dielectric Breakdown Process of Polymers Transactions on Electrical Insulation, IEEE EI-15 3 206 224 June 1980
  9. Kosaki, M. Super electrical insulation of polymers in cryogenic region Proceedings of the 7th International Conference on Properties and Applications of Dielectric Material 1 9 14 1 1 5 June 2003
  10. Lee, Y.J. Shin, W.J. Lee, S.H. Koo, J.Y. Yoon, J.H. Lim, K.J. Choi, K.D. Lee, B.W. High Voltage Dielectric Characteristics of Epoxy Nano-Composites in Liquid Nitrogen for Superconducting Equipment IEEE Transactions on Applied Superconductivity 21 3 1426 1429 June 2011
  11. U.S. Departmentof Energy High Temperature Superconducting Cable S006 Annual Peer Review, Superconductivity Program for Electric Systems Washington, DC July 25 27 2006 http://www.ornl.gov/sci/htsc/documents/pdf/fy2006/HTSCable-LindsayandDemko.pdf
  12. Christou, I. Nelms, A. Cotton, I. Husband, M. “Choice of Optimal Voltage for More Electric Aircraft Wiring Systems,” Electrical Systems in Transportation, IET 2011
  13. Padiyar, K.R. “HVDC Power Transmission Systems: Technology and System Interactions,” John Wiley and Sons New Delhi 1990
  14. Federal Aviation Administration Advisory Circular 25:1309-1A June 21 1988
  15. Society of Automotive Engineers Aerospace Recommended Practice 4754: Certification Considerations for Highly-Integrated or Complex Aircraft Systems November 1996
  16. Vicroy, Dan Blended-Wing-Body Low-Speed Flight Dynamics: Summary of Ground Tests and Sample Results (Invited) 47 th AIAA Aerospace Sciences Meeting and Exhibit Jan 2009
  17. Rahman, Naveed Propulsion and Flight Controls Integration for the Blended Wing Body Aircraft PhD Thesis Cranfield University May 2009

Cited By