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José Ramiro Martinez de Dios

4 accepted papers

2025

Flapping-Wing Flying Robot with Integrated Dual-Arm Scissors-Type Flora Sampling System

ICRA 2025

The flapping-wing robotic birds were inspired by nature to present an alternative way of thrust and lift generation instead of conventional high-speed rotary propellers in unmanned aerial platforms. The advances in flapping technology recently led to the prototyping of leg-claw mechanisms for perchi

Cited by 0SourceScholar
2022

Free as a Bird: Event-Based Dynamic Sense-and-Avoid for Ornithopter Robot Flight

RA-L 2022

Autonomous flight of flapping-wing robots is a major challenge for robot perception. Most of the previous <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">sense-and-avoid</i> works have studied the problem of obstacle avoidance for flapping-wing robot

Cited by 45SourceScholar
2022

Perception-Aware Perching on Powerlines With Multirotors

RA-L 2022

Multirotor aerial robots are becoming widely used for the inspection of powerlines. To enable continuous, robust inspection without human intervention, the robots must be able to perch on the powerlines to recharge their batteries. Highly versatile perching capabilities are necessary to adapt to the

Cited by 24SourcecodeScholar
2021

The GRIFFIN Perception Dataset: Bridging the Gap Between Flapping-Wing Flight and Robotic Perception

RA-L 2021

The development of automatic perception systems and techniques for bio-inspired flapping-wing robots is severely hampered by the high technical complexity of these platforms and the installation of onboard sensors and electronics. Besides, flapping-wing robot perception suffers from high vibration l

Cited by 32SourceScholar