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- W2019038351 abstract "No AccessEngineering NoteOptimization of Aircraft Cruise Procedures Using Discrete Trajectory PatternsAlfonso Valenzuela and Damián RivasAlfonso ValenzuelaDepartment of Aerospace Engineering, Universidad de Sevilla, Seville 41092, Spain*Assistant Professor, Department of Aerospace Engineering, Escuela Técnica Superior de Ingeniería; . Member AIAA.Search for more papers by this author and Damián RivasDepartment of Aerospace Engineering, Universidad de Sevilla, Seville 41092, Spain†Professor, Department of Aerospace Engineering, Escuela Técnica Superior de Ingeniería; . Member AIAA.Search for more papers by this authorPublished Online:24 Sep 2014https://doi.org/10.2514/1.C032041SectionsView Full TextPDFPDF Plus ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookTwitterLinked InRedditEmail About References [1] Barman J. F. and Erzberger H., “Fixed-Range Optimum Trajectories for Short-Haul Aircraft,” Journal of Aircraft, Vol. 13, No. 10, 1976, pp. 748–754. doi:https://doi.org/10.2514/3.58706 JAIRAM 0021-8669 LinkGoogle Scholar[2] Erzberger H. and Lee H., “Constrained Optimum Trajectories with Specified Range,” Journal of Guidance, Control, and Dynamics, Vol. 3, No. 1, 1980, pp. 78–85. doi:https://doi.org/10.2514/3.55950 JGCDDT 0162-3192 LinkGoogle Scholar[3] Burrows J. W., “Fuel-Optimal Aircraft Trajectories with Fixed Arrival Times,” Journal of Guidance, Control, and Dynamics, Vol. 6, No. 1, 1983, pp. 14–19. doi:https://doi.org/10.2514/3.19796 JGCDDT 0162-3192 LinkGoogle Scholar[4] Burrows J. W., “Fuel Optimal Trajectory Computation,” Journal of Aircraft, Vol. 19, No. 4, 1982, pp. 324–329. doi:https://doi.org/10.2514/3.44756 JAIRAM 0021-8669 LinkGoogle Scholar[5] Bilimoria K. D., Cliff E. M. and Kelley H. J., “Classical and Neo-Classical Cruise-Dash Optimization,” Journal of Aircraft, Vol. 22, No. 7, 1985, pp. 555–560. doi:https://doi.org/10.2514/3.45165 JAIRAM 0021-8669 LinkGoogle Scholar[6] Chakravarty A., “Four-Dimensional Fuel-Optimal Guidance in the Presence of Winds,” Journal of Guidance, Control, and Dynamics, Vol. 8, No. 1, 1985, pp. 16–22. doi:https://doi.org/10.2514/3.19929 JGCDDT 0162-3192 LinkGoogle Scholar[7] Coppenbarger R. A., Lanier R., Sweet D. and Dorsky S., “Design and Development of the En Route Descent Advisor (EDA) for Conflict-Free Arrival Metering,” AIAA Paper 2004-4875, 2004. LinkGoogle Scholar[8] Vivona R. A., Karr D. A. and Roscoe D. A., “Pattern-Based Genetic Algorithm for Airborne Conflict Resolution,” AIAA Paper 2006-6060, 2006. LinkGoogle Scholar[9] Valenzuela A. and Rivas D., “Conflict Resolution in Converging Air Traffic Using Trajectory Patterns,” Journal of Guidance, Control, and Dynamics, Vol. 34, No. 4, 2011, pp. 1172–1189. doi:https://doi.org/10.2514/1.50751 JGCDDT 0162-3192 LinkGoogle Scholar[10] Slattery R. and Zhao Y., “Trajectory Synthesis for Air Traffic Automation,” Journal of Guidance, Control, and Dynamics, Vol. 20, No. 2, 1997, pp. 232–238. doi:https://doi.org/10.2514/2.4056 JGCDDT 0162-3192 LinkGoogle Scholar[11] Jackson M. R., Zhao Y. and Slattery R. A., “Sensitivity of Trajectory Prediction in Air Traffic Management,” Journal of Guidance, Control, and Dynamics, Vol. 22, No. 2, 1999, pp. 219–228. doi:https://doi.org/10.2514/2.4398 JGCDDT 0162-3192 LinkGoogle Scholar[12] Barrer J. N., “Integrating the Flight Management System with Air Traffic Control Functions—The Concept of Path Objects,” MITRE Corp. TR-MTR-99W000011, Bedford, MA, 1999. Google Scholar[13] Gill W. and Maddock R., “EFMS Prediction of Optimal 4D Trajectories in the Presence of Time and Altitude Constraints,” EUROCONTROL PHARE Doc, 97-70-09, 1997. Google Scholar[14] Betts J. T. and Cramer E. J., “Application of Direct Transcription to Commercial Aircraft Trajectory Optimization,” Journal of Guidance, Control, and Dynamics, Vol. 18, No. 1, 1995, pp. 151–159. doi:https://doi.org/10.2514/3.56670 JGCDDT 0162-3192 LinkGoogle Scholar[15] Soler M., Olivares A. and Staffetti E., “Hybrid Optimal Control Approach to Commercial Aircraft Trajectory Planning,” Journal of Guidance, Control, and Dynamics, Vol. 33, No. 3, 2010, pp. 985–991. doi:https://doi.org/10.2514/1.47458 JGCDDT 0162-3192 LinkGoogle Scholar[16] Menon P. K., Sweriduk G. D. and Sridhar B., “Optimal Strategies for Free-Flight Air Traffic Conflict Resolution,” Journal of Guidance, Control, and Dynamics, Vol. 22, No. 2, 1999, pp. 202–211. doi:https://doi.org/10.2514/2.4384 JGCDDT 0162-3192 LinkGoogle Scholar[17] Wu D. and Zhao Y. J., “Performances and Sensitivities of Optimal Trajectory Generation for Air Traffic Control Automation,” AIAA Paper 2009-6167, 2009. LinkGoogle Scholar[18] Torres R., Chaptal J., Bès C. and Hiriart-Urruty J.-B., “Optimal, Environmentally Friendly Departure Procedures for Civil Aircraft,” Journal of Aircraft, Vol. 48, No. 1, 2011, pp. 11–22. doi:https://doi.org/10.2514/1.C031012 JAIRAM 0021-8669 LinkGoogle Scholar[19] Valenzuela A., Rivas D. and Franco A., “Cruise Optimization Using Trajectory Patterns,” AIAA Paper 2010-9140, 2010. LinkGoogle Scholar[20] Franco A., Rivas D. and Valenzuela A., “Minimum-Fuel Cruise at Constant Altitude with Fixed Arrival Time,” Journal of Guidance, Control, and Dynamics, Vol. 33, No. 1, 2010, pp. 280–285. doi:https://doi.org/10.2514/1.46465 JGCDDT 0162-3192 LinkGoogle Scholar[21] Shampine L. F. and Reichelt M. W., “The MATLAB ODE Suite,” SIAM Journal on Scientific Computing, Vol. 18, No. 1, 1997, pp. 1–22. doi:https://doi.org/10.1137/S1064827594276424 SJOCE3 1064-8275 CrossrefGoogle Scholar[22] “Procedures for Air Navigation Services: Air Traffic Management,” 15th ed., International Civil Aviation Organization Doc. 4444, Montreal, 2007, pp. 4–9, 5–2. Google Scholar[23] Biegler L. T. and Grossman I. E., “Retrospective on Optimization,” Computers and Chemical Engineering, Vol. 28, No. 8, 2004, pp. 1169–1192. doi:https://doi.org/10.1016/j.compchemeng.2003.11.003 CCENDW 0098-1354 CrossrefGoogle Scholar[24] Fletcher R., Practical Methods of Optimization, Wiley, New York, 1987, pp. 331–336. Google Scholar[25] Schittkowski K., “NLPQL: A Fortran Subroutine Solving Constrained Nonlinear Programming Problems,” Annals of Operations Research, Vol. 5, No. 2, 1985, pp. 485–500. AOREEV 0254-5330 CrossrefGoogle Scholar[26] Rivas D., López-García O., Esteban S. and Gallo E., “An Analysis of Maximum Range Cruise Including Wind Effects,” Aerospace Science and Technology, Vol. 14, No. 1, 2010, pp. 38–48. doi:https://doi.org/10.1016/j.ast.2009.11.005 ARSTFZ 1270-9638 CrossrefGoogle Scholar Previous article Next article" @default.
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