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José Ángel Acosta

6 accepted papers

2022

A Lightweight Beak-Like Sensing System for Grasping Tasks of Flapping Aerial Robots

RA-L 2022

Many sensor systems in robotics are bio-inspired by similar mechanisms in living creatures. Birds frequently use their beaks to grasp and manipulate objects. This work proposes a very lightweight sensor system that emulates a bird’s beak, thus allowing flapping aerial robots to interact with the env

Cited by 4SourceScholar
2021

Control Aware of Limitations of Manipulators With Claw for Aerial Robots Imitating Bird's Skeleton

RA-L 2021

Winged animals such as birds, flying mammals or insects have lightweight limbs which allow them to perform different tasks. Although in robotics there are some examples of winged robots (called ornithopters), it has not been yet studied how to add them some manipulation-like capabilities, similarly

Cited by 14SourceScholar
2021

Design of the High-Payload Flapping Wing Robot E-Flap

RA-L 2021

Autonomous lightweight flapping-wing robots show potential to become a safe and affordable solution for rapidly deploying robots around humans and in complex environments. The absence of propellers makes such vehicles more resistant to physical contact, permitting flight in cluttered environments, a

Cited by 73SourceScholar
2020

Adaptive Integral Inverse Kinematics Control for Lightweight Compliant Manipulators

RA-L 2020

In this letter, an adaptive to unknown stiffness algorithm for controlling low-cost lightweight compliant manipulators is presented. The proposed strategy is based on the well-known transpose inverse kinematics approach, that has been enhanced with an integral action and an update law for the unknow

Cited by 14SourceScholar
2015

Integral action in first-order Closed-Loop Inverse Kinematics. Application to aerial manipulators

ICRA 2015

The aim of this work is to design, analyze and test the behaviour of first-order CLIK (Closed-Loop Inverse Kinematics) manipulator algorithms under the influence of Cartesian integral error feedback. Although CLIK algorithms has been widely and successfully applied in robot manipulators with structu

Cited by 28SourceScholar