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tual Hyper-Redundant Chain Robot with Monocular Vision - DPI
tual Hyper-Redundant Chain Robot with Monocular Vision - DPI

BioInMech Lab, Ritsumeikan University, Japan / 生物知能機械学研究室,立命館大学
BioInMech Lab, Ritsumeikan University, Japan / 生物知能機械学研究室,立命館大学

Inverse Displacement Analysis of a Hyper-redundant Elephant's Trunk Robot
Inverse Displacement Analysis of a Hyper-redundant Elephant's Trunk Robot

Minimally Actuated Serial Robot
Minimally Actuated Serial Robot

The hyper-redundant bionic trunk-like robot. | Download Scientific Diagram
The hyper-redundant bionic trunk-like robot. | Download Scientific Diagram

GreyPilgrim's "EMMA" Hyper-Redundant Robotic Manipulator | Download  Scientific Diagram
GreyPilgrim's "EMMA" Hyper-Redundant Robotic Manipulator | Download Scientific Diagram

Kinematic modeling of hyper redundant robot using ball screw mechanism  approach | Semantic Scholar
Kinematic modeling of hyper redundant robot using ball screw mechanism approach | Semantic Scholar

Obstacle Avoidance and Multitarget Tracking of a Super Redundant Modular  Manipulator Based on Bezier Curve and Particle Swarm Optimization | Chinese  Journal of Mechanical Engineering | Full Text
Obstacle Avoidance and Multitarget Tracking of a Super Redundant Modular Manipulator Based on Bezier Curve and Particle Swarm Optimization | Chinese Journal of Mechanical Engineering | Full Text

The ultimate hyper redundant robotic arm based on omnidirectional joints |  Semantic Scholar
The ultimate hyper redundant robotic arm based on omnidirectional joints | Semantic Scholar

2: Hyper-redundant manipulator robot | Download Scientific Diagram
2: Hyper-redundant manipulator robot | Download Scientific Diagram

EnginSoft - Optimizing the cable routing for a hyper-redundant inspection  robot for harsh, hazardous environments
EnginSoft - Optimizing the cable routing for a hyper-redundant inspection robot for harsh, hazardous environments

Redundant Robots | Robot Academy
Redundant Robots | Robot Academy

Frontiers | A Survey for Machine Learning-Based Control of Continuum Robots
Frontiers | A Survey for Machine Learning-Based Control of Continuum Robots

BioInMech Lab, Ritsumeikan University, Japan / 生物知能機械学研究室,立命館大学
BioInMech Lab, Ritsumeikan University, Japan / 生物知能機械学研究室,立命館大学

Applied Sciences | Free Full-Text | Design and Kinematic Control of the  Cable-Driven Hyper-Redundant Manipulator for Potential Underwater  Applications | HTML
Applied Sciences | Free Full-Text | Design and Kinematic Control of the Cable-Driven Hyper-Redundant Manipulator for Potential Underwater Applications | HTML

Hyper-redundant robotic manipulator | Download Scientific Diagram
Hyper-redundant robotic manipulator | Download Scientific Diagram

JJRG: Showing our robots in IRM2019
JJRG: Showing our robots in IRM2019

Springer Handbook of Robotics: Chapter 11
Springer Handbook of Robotics: Chapter 11

Design and Validation of a Novel Cable-Driven Hyper-Redundant Robot Based  on Decoupled Joints
Design and Validation of a Novel Cable-Driven Hyper-Redundant Robot Based on Decoupled Joints

Kinematics analysis of a 3-DOF joint for a novel hyper-redundant robot arm  | Semantic Scholar
Kinematics analysis of a 3-DOF joint for a novel hyper-redundant robot arm | Semantic Scholar

Sensors | Free Full-Text | Design of a Hyper-Redundant Robot and  Teleoperation Using Mixed Reality for Inspection Tasks
Sensors | Free Full-Text | Design of a Hyper-Redundant Robot and Teleoperation Using Mixed Reality for Inspection Tasks

Multi-Input Multi-Output Adaptive Control of 9-DOF Hyper-Redundant Robotic  Arm
Multi-Input Multi-Output Adaptive Control of 9-DOF Hyper-Redundant Robotic Arm

Inclined Links Hyper-Redundant Elephant Trunk-Like Robot
Inclined Links Hyper-Redundant Elephant Trunk-Like Robot

Safe Human-Robot Interaction Using Variable Stiffness, Hyper-Redundancy,  and Smart Robotic Skins | IntechOpen
Safe Human-Robot Interaction Using Variable Stiffness, Hyper-Redundancy, and Smart Robotic Skins | IntechOpen

RoMeLa | HyDRAS: Hyper-redundant Discrete Robotic Articulated Serpentine
RoMeLa | HyDRAS: Hyper-redundant Discrete Robotic Articulated Serpentine

Formulation of kinematics and gait locomotion for Hyper-Redundant robot -  ScienceDirect
Formulation of kinematics and gait locomotion for Hyper-Redundant robot - ScienceDirect

Figure 1 from Control of a hyper-redundant robot | Semantic Scholar
Figure 1 from Control of a hyper-redundant robot | Semantic Scholar