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Control laws for a formation of autonomous flight vehicles

Published online by Cambridge University Press:  03 February 2016

M. Chiaramonti
Affiliation:
Department of Aerospace Engineering, University of Pisa, Pisa, Italy
G. Mengali
Affiliation:

Abstract

This paper investigates the performance of a flight control system, based on nonlinear dynamics inversion theory, whose aim is to maintain a given geometry of a formation of unmanned aerial vehicles. A fundamental aspect is the complete three dimensionality of the formation geometry that provides a substantial improvement over existing two-dimensional control laws. The designed control system has been implemented in a Simulink® environment and its effectiveness has been tested with a campaign of numerical simulations.

Type
Research Article
Copyright
Copyright © Royal Aeronautical Society 2009 

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References

1. Buzogany, L.E., Pachter, M. and D’azzo, J.J., Automated control of aircraft in formation flight, 1993, AIAA Guidance, Navigation and Control Conference, Monterey, CA, August 1993, pp 13491370.Google Scholar
2. Pachter, M., D’azzo, J.J. and Dargan, J.L., Automatic formation flight control, J Guidance, Control and Dynamics, November-December 1994, 17, (6), pp 13801383.Google Scholar
3. Proud, A.W., Pachter, M. and D’azzo, J.J., Close formation flight control, 1999, AIAA Guidance, AIAA Paper 99-4207, Navigation and Control Conference, Portland, OR, August 1999.Google Scholar
4. Singh, S.N., Chandler, P., Schumacher, C., Banda, S. and Pachter, M., Nonlinear adaptive close formation control of unmanned aerial vehicles, Dynamics and Control, April 2000, 10, (2), pp 179194.Google Scholar
5. Pachter, M., D’azzo, J.J. and Proud, A.W., Tight formation flight control, J Guidance, Control and Dynamics, March-April 2001, 24, (2), pp 246254.Google Scholar
6. Sai-Ming, L., Boskovic, J.D. and Mehra, R., Globally stable automatic formation flight control in two-dimensions, 2001, Vol AIAA 2001-4046, AIAA Guidance, Navigation and Control Conference and Exhibition, Montreal, Canada, 6-9 August 2001.Google Scholar
7. Boskovic, J.D., Sai-Ming, L. and Mehra, R.K., Formation flight control design in the presence of unknown leader commands, 2002, American Control Conference Anchorage, AK, 8-10 May 2002.Google Scholar
8. Wan, S., Campa, G., Napolitano, M., Seanor, B. and Gu, Y., Design of formation control laws for research aircraft models, 2003, AIAA Paper 2003-5730, AIAA Guidance, Navigation, and Control Conference and Exhibition, Austin, Texas, 11-14 August 2003.Google Scholar
9. Campa, G., Napolitano, M.R., Seanor, B. and Perhinschi, M.G., Design of control laws for maneuvered formation flight, 2004, American Control Conference, Boston, Massachusetts, 2004.Google Scholar
10. Seanor, B., Campa, G., Gu, Y., Napolitano, M., Rowe, L. and Perhinschi, M., Formation flight test results for UAV research aircraft models, 2004, AIAA 1st Intelligent Systems Technical Conference, Chicago, IL, 20-22 September 2004.Google Scholar
11. Campa, G., Seanor, B., Gu, Y. and Napolitano, M.R., NLDI guidance control laws for close formation flight, 2005, American Control Conference, Portland, OR, USA, 2005.Google Scholar
12. Gu, Y., Seanor, B., Campa, G., Napolitano, M.R., Rowe, L., Gururajan, S. and Wan, S., Design and flight testing evaluation of formation control laws, IEEE Transactions on Control Systems Technology, November 2006, 14, pp 11051112.Google Scholar
13. Seanor, B., Gu, Y., Napolitano, M. R., Campa, G., Gururajan, S. and Rowe, L., Three-aircraft formation flight experiment, 2006, 14th Mediterranean Conference on Control and Automation, 2006.Google Scholar
14. Slotine, J.J. and Li, W., Applied Nonlinear Control, Chapter 6, 1991, Prentice-Hall, pp 262272.Google Scholar
15. Pollini, L. and Innocenti, M., A Synthetic environment for dynamic systems control distributed simulation, IEEE control systems magazine, 20, (2), pp 3444.Google Scholar
16. Anderson, M.R. and Robbins, A.C., Formation flight as a cooperative game, 1998, AIAA Guidance, Navigation and Control Conference, AIAA Paper 98-4124, Philadelphia, PA, August 1998.Google Scholar
17. Giulietti, F. and Mengali, G., Dynamics and control of different aircraft formation structures, Aeronaut J, March 2004, 108, (1081), pp 117124.Google Scholar
18. Stevens, B.L. and Lewis, F.L., Aircraft Control and Simulation, 1992, John Wiley & Sons, New York.Google Scholar