Flybo: A unified benchmark environment for autonomous flying robots

A Brunel, A Bourki, O Strauss… - … Conference on 3D …, 2021 - ieeexplore.ieee.org
The use of Micro-Aerial Vehicles (MAVs) equipped with odometry-and depth sensors has
become predominant for a wide variety of challenging industrial applications such as the …

FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss… - 3DV 2021-9th …, 2021 - hal.science
The use of Micro-Aerial Vehicles (MAVs) equipped with odometry and depth sensors has
become predominant for a wide variety of challenging industrial applications such as the …

[PDF][PDF] FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss, C Demonceaux - scholar.archive.org
Abstract The use of Micro-Aerial Vehicles (MAVs) equipped with odometry-and depth
sensors has become predominant for a wide variety of challenging industrial applications …

[PDF][PDF] FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss, C Demonceaux - researchgate.net
Abstract The use of Micro-Aerial Vehicles (MAVs) equipped with odometry-and depth
sensors has become predominant for a wide variety of challenging industrial applications …

FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss… - … Conference on 3D Vision …, 2021 - computer.org
Abstract The use of Micro-Aerial Vehicles (MAVs) equipped with odometry-and depth
sensors has become predominant for a wide variety of challenging industrial applications …

FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss… - 3DV 2021-9th …, 2021 - inria.hal.science
The use of Micro-Aerial Vehicles (MAVs) equipped with odometry and depth sensors has
become predominant for a wide variety of challenging industrial applications such as the …

[PDF][PDF] FLYBO: A Unified Benchmark Environment for Autonomous Flying Robots

A Brunel, A Bourki, O Strauss, C Demonceaux - hal.science
Abstract The use of Micro-Aerial Vehicles (MAVs) equipped with odometry-and depth
sensors has become predominant for a wide variety of challenging industrial applications …