DocumentCode
3663898
Title
Customization of low-cost hexapod robots based on optimal design through inverse dynamics computation
Author
Pasquale Cirillo;Giuseppe De Maria;Ciro Natale
Author_Institution
Dipartimento di Ingegneria Industriale e dell´Informazione, Seconda Università
fYear
2015
Firstpage
1110
Lastpage
1115
Abstract
The Stewart parallel mechanism is used in various applications due to its high load-carrying capacity, accuracy and stiffness, such as flight simulation, spaceship aligning, radar and satellite antenna orientation, rehabilitation applications, parallel machine tools. The dissemination of such parallel robots is however limited by three factors: the limited workspace, the singularity configurations existing inside the workspace, and the high cost. In this work, a simulation environment to support the design of a cost-effective Stewart Platform-based mechanisms for specific applications and to facilitate the choice of suitable components, e.g., linear actuators, plate sizes, is presented. The optimal design here presented has multiple objectives. It intends to maximize the payload and minimize the forces at each leg needed to counteract external forces applied to the mobile platform during positioning or manufacturing applications. These objectives can be achieved through a dynamic optimization. It also aims at avoiding reduction of the robot workspace through a kinematic optimization.
Keywords
"Geometry","Optimization","Actuators","Mobile communication","Joints","Manipulators"
Publisher
ieee
Conference_Titel
Methods and Models in Automation and Robotics (MMAR), 2015 20th International Conference on
Type
conf
DOI
10.1109/MMAR.2015.7284034
Filename
7284034
Link To Document