DocumentCode
1580151
Title
Evolution of a four wheeled active suspension rover with minimal actuation for rough terrain mobility
Author
Singh, Arun Kumar ; Eathakota, Vijay Prakash ; Krishna, K. Madhava ; Patil, Arun H.
Author_Institution
Robot. Res. Center, IIIT-Hyderabad, Hyderabad, India
fYear
2009
Firstpage
794
Lastpage
799
Abstract
In this paper we deduce the evolution of a four wheeled active suspension rover from a five wheeled passive suspension rover. The aim of this paper is to design a suspension mechanism which utilizes the advantages of both passive suspension and active suspension rover. Both the design considered here are simpler than the existing suspension mechanisms in the sense that the number of links as wells as the number of joints have been significantly reduced without compromising the climbing capability of the rover. We first analyze the kinematics of the five wheeled rover and its motion pattern while climbing an obstacle and try to deduce the same motion pattern and capability in the four wheeled rover. Both the suspension mechanism consists of two planar closed kinematic chains on each side of the rover. We also deduce the control strategy for the active suspension rover wherein only two actuators are used to control the internal configuration of the rover. To the best of author´s knowledge this is the minimum number of actuators required to control the internal configuration of a active suspension while operating on a fully 3D rough terrain. Extensive uneven terrain simulations are performed for both 5-wheeled and 4-wheeled rover and a comparative analysis has been done on maximum coefficient of friction and torque requirements.
Keywords
motion control; planetary rovers; robot kinematics; suspensions (mechanical components); terrain mapping; climbing capability; five wheeled rover kinematics; four wheeled active suspension rover; minimal actuation; motion pattern; passive suspension rover; planar closed kinematic chain; rough terrain mobility; suspension mechanism; terrain simulation; Actuators; Biomimetics; Force control; Kinematics; Leg; Mobile robots; Motion analysis; Stability; Vehicles; Wheels;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Biomimetics (ROBIO), 2009 IEEE International Conference on
Conference_Location
Guilin
Print_ISBN
978-1-4244-4774-9
Electronic_ISBN
978-1-4244-4775-6
Type
conf
DOI
10.1109/ROBIO.2009.5420571
Filename
5420571
Link To Document