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Emili Hernández

6 accepted papers

2022

Forest Traversability Mapping (FTM): Traversability estimation using 3D voxel-based Normal Distributed Transform to enable forest navigation

IROS 2022poster

Autonomous navigation in dense vegetation remains an open challenge and is an area of major interest for the research community. In this paper we propose a novel traversability estimation method, the Forest Traversability Map, that gives autonomous ground vehicles the ability to navigate in harsh fo…

Cited by 9SourceScholar
2021

Virtual Surfaces and Attitude Aware Planning and Behaviours for Negative Obstacle Navigation

RA-L 2021

This letter presents an autonomous navigation system for ground robots traversing aggressive unstructured terrain through a cohesive arrangement of mapping, deliberative planning and reactive behaviour modules. All systems are aware of terrain slope, visibility and vehicle orientation, enabling robo

Cited by 33SourceScholar
2019

OVPC Mesh: 3D Free-space Representation for Local Ground Vehicle Navigation

ICRA 2019poster

This paper presents a novel approach for local 3D environment representation for autonomous unmanned ground vehicle (UGV) navigation called On Visible Point Clouds Mesh (OVPC Mesh). Our approach represents the surrounding of the robot as a watertight 3D mesh generated from local point cloud data in…

Cited by 50SourceScholar
2019

Optimization-Based Terrain Analysis and Path Planning in Unstructured Environments

ICRA 2019poster

Accurate environment representation is one of the key challenges in autonomous ground vehicle navigation in unstructured environments. We propose a real-time optimization-based approach to terrain modeling and path planning in off-road and rough environments. Our method uses an irregular, hierarchic…

Cited by 21SourceScholar
2016

Real-time monocular obstacle avoidance using Underwater Dark Channel Prior

IROS 2016poster

In this paper we propose a new vision-based obstacle avoidance strategy using the Underwater Dark Channel Prior (UDCP) that can be applied to any Unmanned Underwater Vehicle (UUV) equipped with a simple monocular camera and minimal on-board processing capabilities. For each incoming image, our metho…

Cited by 29SourceScholar