References
- [1] Granino Korn Random-Process Simulation and Measurements. McGraw-Hill Book Company, New York-Toronto-London-Sydney, 1966.
- [2] Donald McLean Automatic Flight Control Systems. Prentice-Hall, Int., New York - London - Toronto - Sydney - Tokyo - Singapore, 1990.
- [3] MIL-STD-1797A, Notice 3, Flying Qualities of Piloted Aircraft, Department of Defense, Interface Standard, 2004.
- [4] Róbert Szabolcsi Mathematical Models for Gust Modeling Applied in Automatic Flight Control Systems’ Design, Proceedings of the “5th International Conference New Challenges in the Field of Military Sciences 2007”, Vol. II., ISBN 978-963-87706-0-8, pp (95-118), 2007, Budapest, Hungary.
- [5] Róbert Szabolcsi Preliminary Control Law Synthesis for Automatic Flight controlSystems of Aircraft, Proceedings of the “5th International Conference New Challenges in the Field of Military Sciences 2007”, Vol. II., ISBN 978-963-87706-0-8, pp (119-136), 2007, Budapest, Hungary.
- [6] Róbert Szabolcsi - György Mészáros Computer Aided Simulation of the Random Atmospheric Turbulences, CD-ROM Proceedings of the 6th International Conference on Crisis Management, ISBN 978-80-7231-510-9, pp(366-379), 14-15 May, 2008, Brno, Czech Republic
- [7] Róbert Szabolcsi Stochastic Noises Affecting Dynamic performances of the AutomaticFlight Control Systems, Review of the Air Force Academy, ISSN 1842-9238, 1/2009., pp(23-30).
- [8] Róbert Szabolcsi Modern Automatic Flight Control Systems, Miklós Zrínyi National Defense University, Budapest, ISBN 978-963-7060-32-8, p415, 2011 (in Hungarian).
- [9] Róbert Szabolcsi Automatic Flight Control Systems of the Air Robots, Óbuda University, Budapest, ISBN 978-615-5460-23-4, p478, 2016 (in Hungarian).
- [10] MATLAB 9.0 (R2016a) - The Language of Technical Computing, User's Guide, The MathWorks, Inc., 2016.
- [11] Control System Toolbox 10.0 for Use with MATLAB (R2016a), User's Guide, The MathWorks, Inc., 2016.
