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Jonathan Arreguit

4 accepted papers

2026

Polymander II: An Amphibious Salamander-Inspired Robot with Contact and Flow Sensors

ICRA 2026poster

Robots benefit from sensory information to coordinate body movement, gain robustness against perturbations, and transit between different modes to adapt to various terrains. However, few amphibious robots can sense interactions with both terrestrial and aquatic environments. In this paper, we presen…

2022

Gazebo Fluids: SPH-based simulation of fluid interaction with articulated rigid body dynamics

IROS 2022poster

Physical simulation is an indispensable component of robotics simulation platforms that serves as the basis for a plethora of research directions. Looking strictly at robotics, the common characteristic of the most popular physics engines, such as ODE, DART, MuJoCo, bullet, SimBody, PhysX or RaiSim,…

Cited by 8SourceScholar
2021

Coupling-dependent convergence behavior of phase oscillators with tegotae-control

IROS 2021poster

A bio-inspired way to model locomotion is using a network of coupled phase oscillators to create a Central Pattern Generator (CPG). The recently developed feedback control method tegotae includes exteroceptive force feedback into the governing phase update equations, leading to gait limit cycles. Ho…

Cited by 2SourceScholar
2020

Emergent adaptive gait generation through Hebbian sensor-motor maps by morphological probing

IROS 2020poster

Gait emergence and adaptation in animals is unmatched in robotic systems. Animals can create and recover locomotive functions "on-the-fly" after an injury whereas locomotion controllers for robots lack robustness to morphological changes. In this work, we extend previous research on emergent interli…

Cited by 6SourceScholar