Controller for Attitude Stabilization with Disturbance Rejection for Steady Hover of Rotary-Wing Flying Robot
Abstract
References
Jiade, W., Guoyong, H. and Yugang, F., “An attitude control method of un-manned helicopter based on adaptive output feedback, in”, Proceedings of the 3rd international conference on intelligent system and knowledge engineering, vol 1, ISKE, 2008, pp. 748–753.
Sakamoto, T., Katayama, H. and Ichikawa, A., “Attitude control of a helicopter model by robust PID controllers”, Proceedings of the International Symposium on Intelligent Control, IEEE, Munich, Germany, 2006.
Zhou, F., Jiande, W. and Ping, L., “Control system design and flight testing for a miniature unmanned helicopter”, Proceedings of the 7th World Congress on intelligent control and automation, WCICA, 2008, pp. 2315–2319.
Athans, M. and Falb, P., Optimal control - an introduction to the theory and its applications, Dover Publications, 2007.
A. E. Bryson and Y.-C. Ho, Applied optimal control - optimization, estimation and control, Taylor and Francis Group,
Datta, S., Patkar, U. S. and Majumder S., “Digital controller for attitude control of rotary-winged flying robot in hover,” Proceeding of International Symposium on Industrial Electronics ISIE 2009, IEEE, 2009, pp. 390 –395.
Datta, S., Patkar, U. S. and Majumder S., “Robust feedback control for attitude stabilization of rotary wing flying robot in hover”, Proceedings of Aerospace Conference, IEEE, 2011, pp. 1 – 8
Datta, S., Patkar, U. S. and Majumder S., “Attitude Controller for Steady Hover of a Rotary Wing Flying Robot”, Journal of Intelligent & Robotic Systems, DOI: 10.1007/s10846-013-9862-2
DOI: http://dx.doi.org/10.21535%2FProICIUS.2013.v9.229
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