DocumentCode
2937403
Title
An Integrated Spatial Path-planning and Controller Design Approach for a Hover-mode Helicopter Model
Author
Pathak, Kaustubh ; Agrawal, Sunil K.
Author_Institution
Mechanical Systems Lab Dept. of Mechanical Engineering University of Delaware, Newark DE 19716. pathak@me.udel.edu
fYear
2005
fDate
18-22 April 2005
Firstpage
1890
Lastpage
1895
Abstract
The objective of this paper is to design a controller based on a nonlinear hover-mode model for a helicopter, which can be seamlessly integrated in an existing spatial path-planning approach. Unlike traditional approaches, this novel two-level hierarchical controller takes ‘ small-body forces’ explicitly into consideration. A higher level controller (HLC), with slower time-scale, controls the translational motion. This controller chooses the main rotor thrust, and a reference signal for the fuselage rotation matrix. This reference rotation matrix is then tracked by a lower level controller (LLC) at a faster time-scale, to select the two flapping angles of the tip path plane (TPP) and the tail rotor thrust. The reference rotation matrix is chosen by the HLC so as to meet the objective of local translation, specified by a local potential function. The local potential field is represented as an obstacle-free spherical region, a ‘ bubble’, in which the helicopter is constrained to fly. A string of such bubbles is generated by an existing spatial path-planning algorithm. The helicopter switches its controlling bubbles in a sequence to produce gross motion. The system is demonstrated by computer simulation, using a scaled model.
Keywords
Helicopter; Path-following Controller; Two time-scale controller; Control systems; Force control; Helicopters; Mechanical engineering; Mechanical systems; Motion control; Nonlinear control systems; Nonlinear dynamical systems; Path planning; Vehicle dynamics; Helicopter; Path-following Controller; Two time-scale controller;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation, 2005. ICRA 2005. Proceedings of the 2005 IEEE International Conference on
Print_ISBN
0-7803-8914-X
Type
conf
DOI
10.1109/ROBOT.2005.1570389
Filename
1570389
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