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Tensegrity robots, composed of rigid struts and elastic tendons, provide impact resistance, low mass, and adaptability to unstructured terrain. Their compliance and complex, coupled dynamics, however, present modeling and control…

Animals can finely modulate their leg stiffness to interact with complex terrains and absorb sudden shocks. In feats like leaping and sprinting, animals demonstrate a sophisticated interplay of opposing muscle pairs that actively modulate…

机器人学 · 计算机科学 2025-04-29 Erik Mortensen , Jan Petrs , Alexander Dittrich , Dario Floreano

There is a surge of research interest in the field of tensegrity robotics. Robots developed under this paradigm provide many advantages and have distinguishing features in terms of structural compliance, dexterity, safety, and weight…

机器人学 · 计算机科学 2022-06-07 Vishal Ramadoss , Keerthi Sagar , Mohamed Sadiq Ikbal , Jesus Hiram Lugo Calles , Matteo Zoppi

Biomimicry has played a pivotal role in robotics. In contrast to rigid robots, bio-inspired robots exhibit an inherent compliance, facilitating versatile movements and operations in constrained spaces. The robot implementation in…

机器人学 · 计算机科学 2024-10-08 Po-Yu Hsieh , June-Hao Hou

Living organisms intertwine soft (e.g., muscle) and hard (e.g., bones) materials, giving them an intrinsic flexibility and resiliency often lacking in conventional rigid robots. The emerging field of soft robotics seeks to harness these…

机器人学 · 计算机科学 2018-02-21 John Rieffel , Jean-Baptiste Mouret

Tensegrity robots, characterized by a synergistic assembly of rigid rods and elastic cables, form robust structures that are resistant to impacts. However, this design introduces complexities in kinematics and dynamics, complicating control…

机器人学 · 计算机科学 2025-03-07 Wenzhe Tong , Tzu-Yuan Lin , Jonathan Mi , Yicheng Jiang , Maani Ghaffari , Xiaonan Huang

Tensegrity structures are lightweight, can undergo large deformations, and have outstanding robustness capabilities. These unique properties inspired roboticists to investigate their use. However, the morphological design, control,…

机器人学 · 计算机科学 2021-01-29 Davide Zappetti , Jean Marc Bejjani , Dario Floreano

Conventional mobile tensegrity robots constructed with straight links offer mobility at the cost of locomotion speed. While spherical robots provide highly effective rolling behavior, they often lack the stability required for navigating…

机器人学 · 计算机科学 2026-03-18 Lauren Ervin , Harish Bezawada , Vishesh Vikas

The dynamical properties of tensegrity robots give them appealing ruggedness and adaptability, but present major challenges with respect to locomotion control. Due to high-dimensionality and complex contact responses, data-driven approaches…

机器人学 · 计算机科学 2018-10-01 David Surovik , Kun Wang , Kostas E. Bekris

Purpose: Six million people use crutches as mobile aids in the US. Rigid designs with no axial mobility limit sensory feedback and lead to secondary injury on the upper joints. Spring-loaded designs offer compliance but may compromise…

机器人学 · 计算机科学 2026-05-05 Jingxian Gu , Joanna Spyra , Andrew Walski , Lyla Elsaesser , Samuel Bierner , Dobromir Dotov

Tensegrity robots are composed of rigid struts and flexible cables. They constitute an emerging class of hybrid rigid-soft robotic systems and are promising systems for a wide array of applications, ranging from locomotion to assembly. They…

机器人学 · 计算机科学 2024-10-17 Nelson Chen , Kun Wang , William R. Johnson , Rebecca Kramer-Bottiglio , Kostas Bekris , Mridul Aanjaneya

Advancements in the domain of physical human-robot interaction (pHRI) have tremendously improved the ability of humans and robots to communicate, collaborate, and coexist. In particular, compliant robotic systems offer many characteristics…

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…

In this paper, we present a light-weight, multi- axis compliant tenegrity joint that is biologically inspired by the human elbow. This tensegrity elbow actuates by shortening and lengthening cable in a method inspired by muscular actuation…

机器人学 · 计算机科学 2015-10-27 Steven Lessard , Jonathan Bruce , Erik Jung , Mircea Teodorescu , Vytas SunSpiral , Adrian Agogino

Tensegrity robots, which are composed of compressive elements (rods) and flexible tensile elements (e.g., cables), have a variety of advantages, including flexibility, low weight, and resistance to mechanical impact. Nevertheless, the…

Tensegrity robots excel in tasks requiring extreme levels of deformability and robustness. However, there are challenges in state estimation and payload versatility due to their high number of degrees of freedom and unconventional shape.…

机器人学 · 计算机科学 2024-09-10 Jonathan Mi , Wenzhe Tong , Yilin Ma , Xiaonan Huang

Operating robots precisely and at high speeds has been a long-standing goal of robotics research. Balancing these competing demands is key to enabling the seamless collaboration of robots and humans and increasing task performance. However,…

Robots built from cable-driven tensegrity (`tension-integrity') structures have many of the advantages of soft robots, such as flexibility and robustness, while still obeying simple statics and dynamics models. However, existing tensegrity…

Piping inspection robots play an essential role for industries as they can reduce human effort and pose a lesser risk to their lives. Generally, the locomotion techniques of these robots can be classified into mechanical and bioinspired. By…

机器人学 · 计算机科学 2022-06-06 Swaminath Venkateswaran , Damien Chablat

Aerial vehicles with collision resilience can operate with more confidence in environments with obstacles that are hard to detect and avoid. This paper presents the methodology used to design a collision resilient aerial vehicle with…

机器人学 · 计算机科学 2020-03-10 Jiaming Zha , Xiangyu Wu , Joseph Kroeger , Natalia Perez , Mark W. Mueller
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