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Adrian K. Agogino

5 accepted papers

2020

Inverse Statics Optimization for Compound Tensegrity Robots

RA-L 2020

Robots built from cable-driven tensegrity (`tension-integrity') structures have many of the advantages of soft robots, such as flexibility and robustness, yet still obey simple statics and dynamics models. However, existing approaches cannot natively model tensegrity robots with arbitrary rigid bodi

Cited by 33SourceScholar
2017

Inclined surface locomotion strategies for spherical tensegrity robots

IROS 2017poster

This paper presents a new teleoperated spherical tensegrity robot capable of performing locomotion on steep inclined surfaces. With a novel control scheme centered around the simultaneous actuation of multiple cables, the robot demonstrates robust climbing on inclined surfaces in hardware experiment…

Cited by 47SourceScholar
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

Hopping and rolling locomotion with spherical tensegrity robots

IROS 2016poster

This work presents a 10 kg tensegrity ball probe that can quickly and precisely deliver a 1 kg payload over a 1 km distance on the Moon by combining cable-driven rolling and thruster-based hopping. Previous research has shown that cable-driven rolling is effective for precise positioning, even in ro…

Cited by 80SourceScholar
2015

Robust learning of tensegrity robot control for locomotion through form-finding

IROS 2015poster

Robots based on tensegrity structures have the potential to be robust, efficient and adaptable. While traditionally being difficult to control, recent control strategies for ball-shaped tensegrity robots have successfully enabled punctuated rolling, hill-climbing and obstacle climbing. These gains h…

Cited by 75SourceScholar