Maximum load determination of nonholonomic mobile manipulator using hierarchical optimal control

Author:

Korayem M. H.,Azimirad V.,Vatanjou H.,Korayem A. H.

Abstract

SUMMARYThis paper presents a new method using hierarchical optimal control for path planning and calculating maximum allowable dynamic load (MADL) of wheeled mobile manipulator (WMM). This method is useful for high degrees of freedom WMMs. First, the overall system is decoupled to a set of subsystems, and then, hierarchical optimal control is applied on them. The presented algorithm is a two-level hierarchical algorithm. In the first level, interaction terms between subsystems are fixed, and in the second level, the optimization problem for subsystems is solved. The results of second level are used for calculating new estimations of interaction variables in the first level. For calculating MADL, the load on the end effector is increased until actuators get into saturation. Given a large-scale robot, we show how the presenting in distributed hierarchy in optimal control helps to find MADL fast. Also, it enables us to treat with complicated cost functions that are generated by obstacle avoidance terms. The effectiveness of this approach on simulation case studies for different types of WMMs as well as an experiment for a mobile manipulator called Scout is shown.

Publisher

Cambridge University Press (CUP)

Subject

Computer Science Applications,General Mathematics,Software,Control and Systems Engineering

Reference13 articles.

1. 5. Mohri A. , Furuno S. , Iwamura M. and Yamamoto M. , “Sub-Optimal Trajectory Planning of Mobile Manipulator,” Proceedings of the IEEE International Conference on Robotics and Automation, Seoul, Korea 2 (2001) pp. 1271–1276.

2. Optimal control of robot manipulators with a new two-level gradient-based approach

3. Maximum load-carrying capacity of autonomous mobile manipulator in an environment with obstacle considering tip over stability

4. 7. Sadati N. and Emamzadeh M. M. , “Optimal Control of Robot Manipulators Using Fuzzy Interaction Prediction System,” Proceedings of the IEEE International Conference on Robotics and Biomimetics, Kunming (2006) pp. 1071–1076.

5. Minimum cost trajectory planning for industrial robots

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