Affiliation:
1. Dalian University of Technology
Abstract
This paper presents the work done towards searching a collision-free path for mobile crane based on C-space in the complex 3D working environment. The crane is simplified into three degrees of freedom (DOFs) robot, each of which is represented as an axis of configuration space (C-space). In this paper, we propose an improved ant colony approach for crane path planning, which takes into full account of not only the factor of the shortest path but also the factor of safety. In this approach, we employ more complete heuristic information, introduce adaptive pheromone volatilization coefficient and pheromone penalty factors, and prevent ants from falling into trap and the stagnation. The reasonability and practicability of the proposed approach for automated path planning is verified by comparing the performances of the present approaches in the practice case, and the comparison results show that the algorithm can gain a relatively optimal solution in short time and have a great value of engineering application.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference24 articles.
1. H.R. Reddy and K. Varghese: Automated Path Planning for Mobile Crane Lifts. Computer-Aided Civil and Infrastructure Engineering, Vol. 17 (2002), pp.439-448.
2. P. L. Sivakumar, K. Varghese, and N. R. Babu: Automated path planning of cooperative crane lifts using heuristic search. Journal of Computing Civil Engineering, Vol. 17 (2003), pp.197-207.
3. M.S.A.D. Ali, N. R. Babu and K. Varghese: Collision free path planning of cooperative crane manipulators using genetic algorithm. Journal of Computing Civil Engineering, Vol. 19 (2005), pp.182-193.
4. M. S. A. D. Ali, N. R. Babu and K. Varghese: Offline path planning of cooperative manipulators using genetic algorithm. Proc., 20th All India Manufacturing Technology, Design and Research Conference (2002), pp.555-562.
5. S. C. Kang and E. Miranda: Planning and visualization for automated robotic crane erection processes in construction. Automation in Construction, Vol. 15 (2006), pp.398-414.
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