Design of a novel hybrid cable-constrained parallel leg mechanism for biped walking machines

Author:

Demirel Murat,Kiper GökhanORCID,Carbone GiuseppeORCID,Ceccarelli MarcoORCID

Abstract

AbstractIn this paper, a novel cable-constrained parallel mechanism is presented as a lightweight, low-cost leg mechanism design for walking machines to be used on flat surfaces. The proposed leg mechanism has three translational degrees of freedom. It is based on two specific hybrid kinematic topologies being herewith proposed. The paper reports the kinematic analysis formulation and a position performance evaluation to confirm the main characteristics of the proposed solutions. A 3D CAD model and simulations are carried out to demonstrate the feasibility of the proposed design for performing a human-like gait trajectory. A prototype has been built, and preliminarily tests have been conducted to confirm the motion capabilities of the proposed mechanism design. Then a second, enhanced prototype has been designed and built. An experimental validation is carried out for tracking a planar walking trajectory with the built prototypes by using a real-time PCI controller. Results are presented to validate the operation characteristics of the proposed mechanism and to prove its feasibility for legged walking machines.

Publisher

Cambridge University Press (CUP)

Subject

Computer Science Applications,General Mathematics,Software,Control and Systems Engineering,Control and Optimization,Mechanical Engineering,Modeling and Simulation

Reference33 articles.

1. A hybrid drive parallel arm for heavy material handling

2. A Family of 3-DOF Translational Parallel Manipulators1

3. [31] Kiper, G. and Söylemez, E. ,“ Modified Wren Platforms,” In: Proceedings of the 13th IFToMM World Congress, Guanajuato, Mexico, vol. 1, (2011) pp. 1183–1187.

4. [5] Kaneko, K. , Kanehiro, F. , Morisawa, M. , Miura, K. , Nakaoka, S. and Kajita, S. , “ Cybernetic Human HRP-4C, Humanoid Robots,” In: 9th IEEE-RAS International Conference, Paris: France (2009) pp. 7–14.

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