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Jeffrey M. Friesen

6 accepted papers

2018

Design of SUPERball v2, a Compliant Tensegrity Robot for Absorbing Large Impacts

IROS 2018poster

In this paper, we present the system design and initial testing of SUPERball v2, a completely re-designed 2-meter spherical six-bar tensegrity robot designed to survive high-speed landings as well as locomote to desired locations. SUPERball v2 was designed to enable a host of new actuation and exper…

Cited by 113SourceScholar
2018

Steerable Locomotion Controller for Six-strut Icosahedral Tensegrity Robots

IROS 2018poster

This paper proposes a novel steerable locomotion controller for six-strut tensegrity robots. Tensegrity robots are lightweight and have many promising features such as robustness, shape-shifting capabilities, and deployability, making them good candidates for exploration and scouting of remote areas…

Cited by 31SourceScholar
2016

The second generation prototype of a Duct Climbing Tensegrity robot, DuCTTv2

ICRA 2016

Duct exploration and maintenance is a task well suited for small agile robots, which must be capable of navigating complex and irregular systems of ducts. Previously, we presented a tensegrity robot, DuCTT (Duct Climbing Tetrahedral Tensegrity), which demonstrated the plausibility of such a robot fo

Cited by 52SourceScholar
2015

Design and control of a micro ball-balancing robot (MBBR) with orthogonal midlatitude omniwheel placement

IROS 2015poster

Ball-balancing robots (BBRs) are endowed with rich dynamics. When properly designed and stabilized via feedback to eliminate jitter, and intuitively coordinated with a well-designed smartphone interface, BBRs exhibit a uniquely fluid and organic motion. Unlike mobile inverted pendulums (MIPs, akin t…

Cited by 11SourceScholar