DocumentCode :
3245816
Title :
Formation control of leader following unmanned ground vehicles using nonlinear model predictive control
Author :
Lim, Heonyoung ; Kang, Yeonsik ; Kim, Jongwon ; Kim, Changwhan
Author_Institution :
Seoul Nat. Univ., Seoul, South Korea
fYear :
2009
fDate :
14-17 July 2009
Firstpage :
945
Lastpage :
950
Abstract :
In this paper, we present various formation keeping ability of multiple unmanned ground vehicles (UGV) using nonlinear model predictive control based method. The high-level formation control problems of multiple UGVs such as smooth path planning and collision avoidance between UGVs are solved using distributed nonlinear model predictive control method which sequentially solves the optimization problem on-line while sharing the predicted state of each UGV. The formation is guided by the leader UGV, which is controlled by the remote operator, while the rest of the UGVs are following the set points apart from the leader UGV by a specific distance. The optimal control input of each UGV is obtained by solving a discrete nonlinear kinematic model of an UGV sequentially using a gradient descent-based method. The formation keeping performance and the collision avoidance ability are verified through the realistic simulation in which the leader UGV is controlled by the operator´s inputs and the following UGVs switch formations according to the operator commands.
Keywords :
collision avoidance; distributed control; gradient methods; mobile robots; multi-robot systems; nonlinear control systems; optimisation; predictive control; remotely operated vehicles; robot kinematics; collision avoidance; discrete nonlinear kinematic model; distributed nonlinear model predictive control; formation control; gradient descent-based method; leader following unmanned ground vehicle; multiple UGV; multiple robot control; optimization problem; remote operator; smooth path planning; Collision avoidance; Land vehicles; Open loop systems; Optimal control; Predictive control; Predictive models; Robot control; Switches; Trajectory; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Intelligent Mechatronics, 2009. AIM 2009. IEEE/ASME International Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-2852-6
Type :
conf
DOI :
10.1109/AIM.2009.5229887
Filename :
5229887
Link To Document :
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