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Isuru S. Godage

15 accepted papers

2024

Tumbling Locomotion of Tetrahedral Soft-Limbed Robots

RA-L 2024

Soft robots, known for their compliance and deformable nature, have emerged as a transformative field, giving rise to various prototypes and locomotion capabilities. Despite continued research efforts that have shown significant promise, the quest for energy-efficient mobility in soft-limbed robots

Cited by 5SourceScholar
2021

Anticipatory Path Planning for Continuum Arms in Dynamic Environments

ICRA 2021poster

Continuum arms are more adaptable to their environments and inherently human-friendly compared to their rigid counterparts. Path planning of continuum arms is an active research area with many challenges. The hyper-redundancy of continuum arms, which renders them highly versatile, is their curse in…

Cited by 7SourceScholar
2020

Mechanics for Tendon Actuated Multisection Continuum Arms

ICRA 2020poster

Tendon actuated multisection continuum arms have high potential for inspection applications in highly constrained spaces. They generate motion by axial and bending deformations. However, because of the high mechanical coupling between continuum sections, variable length-based kinematic models produc…

Cited by 18SourceScholar
2019

Modeling Variable Curvature Parallel Continuum Robots Using Euler Curves

ICRA 2019poster

In this paper, we propose and investigate a new approach to modeling variable curvature continuum robot sections, based on Euler spirals. Euler spirals, also termed Clothoids, or Cornu spirals, are those curves in which the curvature increases linearly with their arc length. In this work, Euler spir…

Cited by 73SourceScholar
2018

Modelling an Actuated Large Deformation Soft Continuum Robot Surface Undergoing External Forces Using a Lumped-Mass Approacb* Research supported by UK Engineering and Physical Sciences Research Council (EPSRC)

IROS 2018

Precise actuation of continuum surfaces in combination with continuum robotic arms that undergo large deformation is of high interest in soft robotics but of limited model-based study to date. This work develops this area towards enabling the robust design and control of large deformation continuum

Cited by 1SourceScholar
2018

Modelling an Actuated Large Deformation Soft Continuum Robot Surface Undergoing External Forces Using a Lumped-Mass Approach

IROS 2018poster

Precise actuation of continuum surfaces in combination with continuum robotic arms that undergo large deformation is of high interest in soft robotics but of limited model-based study to date. This work develops this area towards enabling the robust design and control of large deformation continuum…

Cited by 11SourceScholar
2017

Through the Eustachian Tube and Beyond: A New Miniature Robotic Endoscope to See Into the Middle Ear

RA-L 2017

This paper presents a novel miniature robotic endoscope that is small enough to pass through the Eustachian tube and provide visualization of the middle ear (ME). The device features a miniature bending tip previously conceived of as a small-scale robotic wrist that has been adapted to carry and aim

Cited by 36SourceScholar
2016

A 3-D Volume Coverage Path Planning Algorithm With Application to Intracerebral Hemorrhage Evacuation

RA-L 2016

This letter presents a new heuristic 3-D volume coverage path planning (VCPP) algorithm for robotic intracerebral hemorrhage evacuation. In contrast to existing 3-D planning techniques, the proposed algorithm generates 3-D paths without first decomposing the volume into series of 2-D planning proble

Cited by 23SourceScholar
2015

Robotic intracerebral hemorrhage evacuation: An in-scanner approach with concentric tube robots

IROS 2015poster

Several robotic systems have been proposed for removing blood from the brain in patients who have undergone a hemorrhagic stroke. In this paper we explore the use of imagebased feedback to address tissue deformation when aspirating a hemorrhage in a phantom model. This is the first time intraoperati…

Cited by 39SourceScholar
2015

Spatial kinematic modeling of a long and thin continuum robotic cable

ICRA 2015poster

In this paper, we present a new forward kinematic model for a novel class of long and thin continuum robots for operation in spatial workspace. Such robots are well suited for navigation through unstructured environments with superior reach using their flexible and thin profile, especially for inspe…

Cited by 26SourceScholar