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Mircea Teodorescu

5 accepted papers

2017

Design and testing of FERVOR: FlexiblE and reconfigurable voxel-based robot

IROS 2017poster

We propose a flexible, reconfigurable robot which achieves rectilinear locomotion by coupling structural deformation and directional friction promoting a locomotion strategy ideal for traversing narrow channels. The robot uses two linear actuators to generate structural waves, which propagate throug…

Cited by 19SourceScholar
2016

A bio-inspired tensegrity manipulator with multi-DOF, structurally compliant joints

IROS 2016poster

Most traditional robotic mechanisms feature inelastic joints that are unable to robustly handle large deformations and off-axis moments. As a result, the applied loads are transferred rigidly throughout the entire structure. The disadvantage of this approach is that the exerted leverage is magnified…

Cited by 108SourceScholar
2016

A lightweight, multi-axis compliant tensegrity joint

ICRA 2016

In this paper, we present a lightweight, multi-axis compliant tensegrity joint that is biologically inspired by the human elbow. This tensegrity elbow actuates by shortening and lengthening cables in a method inspired by muscular actuation in a person. Unlike many series elastic actuators, this join

Cited by 37SourceScholar
2016

Morphological design for controlled tensegrity quadruped locomotion

IROS 2016poster

From the viewpoint of evolution, vertebrates first accomplished locomotion via motion of the spine. Legs evolved later, to enhance mobility, but the spine remains central. Contrary to this, most robots have rigid torsos and rely primarily on movement of the legs for mobility. The force distributing…

Cited by 56SourceScholar