DocumentCode :
3312532
Title :
Effects Analysis Based on Computer Simulation of Autonomous Underwater Vehicle Throw Limiting Period on the Initial Trajectory
Author :
Kai Liu ; Jiong Sun ; Song Shi Shao ; Ping Hu
Author_Institution :
Minist. of Sci. Res., Naval Univ. of Eng., Wuhan, China
fYear :
2012
fDate :
17-19 Aug. 2012
Firstpage :
62
Lastpage :
64
Abstract :
We have set up an AUV (autonomous underwater vehicle) space trajectory mathematical model. Then, the fourth-order Runge-Kutta method and full pivoting Gaussian elimination method are used for the computer simulation of different control distance for the different balancing weighting properties. The initial ballistic changes in the law are researched. The simulation results are as follows. In conditions of relatively small quality of the AUV and large distance between quality heart and floating heart, the AUV initial trajectory is vulnerable to the phenomenon of the arch of water if the up-control distance is short, and the range of the arch of water will become larger if the down-control distance becomes longer. In the other conditions, the initial trajectory has a larger bag depth if the up-control distance is short. If the down-control distance becomes longer, the phenomenon of the arch of water will be more obvious and the range of fluctuation within the transition process becomes larger. According to comprehensive analysis, the setting range of the up-control and down-control distance for two different AUV characteristics is presented.
Keywords :
Gaussian processes; Runge-Kutta methods; autonomous underwater vehicles; ballistics; robot dynamics; robot kinematics; trajectory control; AUV initial trajectory; AUV space trajectory mathematical model; autonomous underwater vehicle throw limiting period; balancing weighting properties; ballistic changes; comprehensive analysis; computer simulation; down-control distance; floating heart; fluctuation range; fourth-order Runge-Kutta method; full-pivoting Gaussian elimination method; quality heart; transition process; up-control distance; water arch; Computational modeling; Computer simulation; Electron tubes; Equations; Mathematical model; Trajectory; AUV; balancing weighing property; computer simulation; initial trajectory; throw limiting period;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational and Information Sciences (ICCIS), 2012 Fourth International Conference on
Conference_Location :
Chongqing
Print_ISBN :
978-1-4673-2406-9
Type :
conf
DOI :
10.1109/ICCIS.2012.139
Filename :
6300022
Link To Document :
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