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Ahmad Ataka

9 accepted papers

2020

Model-Based Pose Control of Inflatable Eversion Robot With Variable Stiffness

RA-L 2020

Plant-inspired inflatable eversion robots with their tip growing behaviour have recently emerged. Because they extend from the tip, eversion robots are particularly suitable for applications that require reaching into remote places through narrow openings. Besides, they can vary their structural sti

Cited by 46SourceScholar
2020

Observer-based Control of Inflatable Robot with Variable Stiffness

IROS 2020poster

In the last decade, soft robots have been at the forefront of a robotic revolution. Due to the flexibility of the soft materials employed, soft robots are equipped with a capability to execute new tasks in new application areas -beyond what can be achieved using classical rigid-link robots. Despite…

Cited by 14SourceScholar
2020

Silicone-based Capacitive E-skin for Exteroception and Proprioception

IROS 2020poster

Thin and imperceptible soft skins that can detect internal deformations as well as external forces, can go a long way to address perception and control challenges in soft robots. However, decoupling proprioceptive and exteroceptive stimuli is a challenging task. In this paper, we present a silicone-…

Cited by 20SourceScholar
2018

Reactive Magnetic-Field-Inspired Navigation Method for Robots in Unknown Convex 3-D Environments

RA-L 2018

With a shift in current robotics application from known, well-defined environments toward unknown environments, the robot's ability to avoid unknown obstacles in real-time while relying on limited information about spatial constraints in its path becomes essential. Taking inspiration from the laws o

Cited by 16SourceScholar
2018

Reactive Magnetic-Field-Inspired Navigation for Non-Holonomic Mobile Robots in Unknown Environments

ICRA 2018poster

In this paper, we present a reactive robot navigation method for a non-holonomic mobile robot taking inspiration from the phenomena observed in magnetic fields. The algorithm is shown to be able to guide mobile robots in arbitrary-shaped convex environment without being trapped in local minima by ex…

Cited by 23SourceScholar
2018

Static Kinematics for an Antagonistically Actuated Robot Based on a Beam-Mechanics-Based Model

IROS 2018poster

Soft robotic structures might play a major role in the 4th industrial revolution. Researchers have successfully demonstrated advantages of soft robotics over traditional robots made of rigid links and joints in several application areas including manufacturing, healthcare and surgical interventions.…

Cited by 19SourceScholar
2016

A geometry deformation model for compound continuum manipulators with external loading

ICRA 2016

The complexity of soft continuum manipulators with hybrid and tuneable structures poses a challenging task to achieve an inverse kinematics model which is both precise and computationally efficient for control and optimization purposes. In this paper, a new method based on the principle of virtual w

Cited by 25SourceScholar
2016

Real-time planner for multi-segment continuum manipulator in dynamic environments

ICRA 2016

In this paper, a potential-field-based real-time path planning algorithm for a multi-segment continuum manipulator is proposed. This planner is employed to enable a continuum-style manipulator to move autonomously in dynamic environments in real-time. The classic potential field method is modified t

Cited by 36SourceScholar
2016

Real-time pose estimation and obstacle avoidance for multi-segment continuum manipulator in dynamic environments

IROS 2016poster

In this paper, we present a novel pose estimation and obstacle avoidance approach for tendon-driven multi-segment continuum manipulators moving in dynamic environments. A novel multi-stage implementation of an Extended Kalman Filter is used to estimate the pose of every point along the manipulator's…

Cited by 32SourceScholar