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A vast number of applications for legged robots entail tasks in complex, dynamic environments. But these environments put legged robots at high risk for limb damage. This paper presents an empirical study of fault tolerant dynamic gaits…

机器人学 · 计算机科学 2023-09-25 Abriana Stewart-Height , Daniel E. Koditschek

In the past decades, considerable attention has been paid to bio-inspired intelligence and its applications to robotics. This paper provides a comprehensive survey of bio-inspired intelligence, with a focus on neurodynamics approaches, to…

机器人学 · 计算机科学 2022-06-20 Junfei Li , Zhe Xu , Danjie Zhu , Kevin Dong , Tao Yan , Zhu Zeng , Simon X. Yang

The paper proposes FireANTs, a multi-scale Adaptive Riemannian Optimization algorithm for dense diffeomorphic image matching. Existing state-of-the-art methods for diffeomorphic image matching are slow due to inefficient implementations and…

计算机视觉与模式识别 · 计算机科学 2026-03-05 Rohit Jena , Pratik Chaudhari , James C. Gee

To reproduce natural standing-up motion, recent studies have emphasized the importance of coordination between the assisting robot and the human. However, many non-wearable assistive devices have struggled to replicate natural motion…

神经元与认知 · 定量生物学 2025-05-20 Atsuya Kusui , Susumu Hirai , Asuka Takai

Many bioinspired robots mimic the rigid articulated joint structure of the human hand for grasping tasks, but experience high-frequency mechanical perturbations that can destabilize the system and negatively affect precision without a…

In this paper, we present a general learning framework for controlling a quadruped robot that can mimic the behavior of real animals and traverse challenging terrains. Our method consists of two steps: an imitation learning step to learn…

机器人学 · 计算机科学 2023-08-08 Tingguang Li , Yizheng Zhang , Chong Zhang , Qingxu Zhu , Jiapeng sheng , Wanchao Chi , Cheng Zhou , Lei Han

Pneumatically operated soft growing robots that extend via tip eversion are well-suited for navigation in confined spaces. Adding the ability to interact with the environment using sensors and tools attached to the robot tip would greatly…

This paper presents a gripper capable of grasping and recognizing terrain shapes for mobile robots in extreme environments. Multi-limbed climbing robots with grippers are effective on rough terrains, such as cliffs and cave walls. However,…

机器人学 · 计算机科学 2026-01-14 Takuya Kato , Kentaro Uno , Kazuya Yoshida

We present VersaPants, the first loose-fitting, textile-based capacitive sensing system for lower-body motion capture, built on the open-hardware VersaSens platform. By integrating conductive textile patches and a compact acquisition unit…

信号处理 · 电气工程与系统科学 2025-11-21 Deniz Kasap , Taraneh Aminosharieh Najafi , Jérôme Paul Rémy Thevenot , Jonathan Dan , Stefano Albini , David Atienza

This paper introduces Borinot, an open-source flying robotic platform designed to perform hybrid agile locomotion and manipulation. This platform features a compact and powerful hexarotor that can be outfitted with torque-actuated…

机器人学 · 计算机科学 2023-07-31 Josep Marti-Saumell , Joan Sola , Angel Santamaria-Navarro , Hugo Duarte

This paper presents an aerial platform capable of performing physically interactive tasks in unstructured environments with human-like dexterity under human supervision. This aerial platform consists of a humanoid torso attached to a…

机器人学 · 计算机科学 2024-04-09 Fanyi Kong , Grazia Zambella , Simone Monteleone , Giorgio Grioli , Manuel G. Catalano , Antonio Bicchi

We present a novel control strategy for dynamic legged locomotion in complex scenarios, that considers information about the morphology of the terrain in contexts when only on-board mapping and computation are available. The strategy is…

机器人学 · 计算机科学 2020-04-01 Octavio Villarreal , Victor Barasuol , Patrick M. Wensing , Darwin G. Caldwell , Claudio Semini

Bimanual manipulation is imperative yet challenging for robots to execute complex tasks, requiring coordinated collaboration between two arms. However, existing methods for bimanual manipulation often rely on costly data collection and…

机器人学 · 计算机科学 2026-02-11 Jinxian Zhou , Ruihai Wu , Yiwei Liu , Yiwen Hou , Xunzhe Zhou , Checheng Yu , Licheng Zhong , Lin Shao

We present a method for humanoid robot walking on partial footholds such as small stepping stones and rocks with sharp surfaces. Our algorithm does not rely on prior knowledge of the foothold, but information about an expected foothold can…

This study focuses on the locomotion capability improvement in a tendon-driven soft quadruped robot through an online adaptive learning approach. Leveraging the inverse kinematics model of the soft quadruped robot, we employ a central…

机器人学 · 计算机科学 2024-06-12 Kaige Tan , Xuezhi Niu , Qinglei Ji , Lei Feng , Martin Törngren

This paper presents a 3-DOF hopping robot with a human-like lower-limb joint configuration and a flat foot, capable of performing dynamic and repetitive jumping motions. To achieve both high torque output and a large hollow shaft diameter…

机器人学 · 计算机科学 2025-05-22 JongHun Choe , Gijeong Kim , Hajun Kim , Dongyun Kang , Min-Su Kim , Hae-Won Park

We compare two representations used to define the morphology of legs for a hexapod robot, which are subsequently 3D printed. A leg morphology occupies a set of voxels in a voxel grid. One method, a direct representation, uses a collection…

机器人学 · 计算机科学 2019-01-23 Jack Collins , Ben Cottier , David Howard

Autonomous robots can transform how we observe marine ecosystems, but close-range operation in reefs and other cluttered habitats remains difficult. Vehicles must maneuver safely near animals and fragile structures while coping with…

机器人学 · 计算机科学 2026-02-26 Zach J. Patterson , Emily Sologuren , Levi Cai , Daniel Kim , Alaa Maalouf , Pascal Spino , Daniela Rus

Attaining animal-like legged locomotion on rough outdoor terrain with sparse foothold affordances -a primary use-case for legs vs other forms of locomotion- is a largely open problem. New advancements in control and perception have enabled…

机器人学 · 计算机科学 2016-12-20 Dimitrios Kanoulas

Legged locomotion on flowing ground ({\em e.g.} granular media) is unlike locomotion on hard ground because feet experience both solid- and fluid-like forces during surface penetration. Recent bio-inspired legged robots display speed…