Customized platforms for UAV research and development

We have built a ready-to-fly aerial system suitable for your research requirements

Fly4Future builds unmanned aerial vehicles and systems of multiple aerial vehicles suited for requirements of research teams at universities as well as private companies worldwide.
Our solution enables integration of a set of voice sensors into a ready-to-fly system accompanied by a realistic Gazebo simulator. To achieve a completely open and flexible research platform, our flagship products rely on PixHawk controller and ROS, but other systems can be integrated on request too.
The key components of the delivered systems include precise control, on-board mission planning, and multi-robot communication. The available aerial systems enable you to immediately verify your multi-UAV and swarm robotics research. If required, we offer on-site training, assistance with experiments, and even carrying out your experiments with our hardware.

Our ready-to-fly platforms can verify your research results in the following fields

  • Swarms and multi-robot systems
  • Visual tracking, navigation, and learning
  • Deep learning and adaptive systems
  • Localization and mapping
  • Human-aerial robot interaction
  • Aerial manipulation, environment interaction and grasping
  • Indoor navigation and localization
  • Field outdoor deployment in demanding conditions
  • Tactile and Force Sensing
  • Heterogeneous UAV-UGV and UAV-AUV teams
  • Perception, on-board sensor verification, sensor fusion
  • UAV control and state estimation
  • Sensor and communication networks
  • Motion planning, path planning, and obstacle avoidance
  • Formation flying and group interaction
  • Agriculture, service, and industrial robotics

Example realizations

Research platform customized for LAAS/CNRS in Toulouse

An example of a fully-equipped research platform was customized and built… (more)

A light-weight fully-autonomous micro aerial vehicle

A light-weight fully-autonomous micro aerial vehicle was designed for deployment close… (more)

A large platform equipped with on-board localization of flying objects

A large platform equipped with on-board localization of flying objects and… (more)

Fotogalerie

Price list - examples

Basic small-size platform with on-board CV

A ready-to-fly unmanned aerial system with a DJI F450 frame, NUC PC with 8GB RAM, 128 GB SSD and WiFi, Pixhawk 2.1 with GPS, 9-channel RC set compatible with Hitec AFHSS for safety pilots and switching between different operation modes, a rangefinder pointing down to enable precise operation close to ground and mvBlueFOX-MLC200wG camera with a global shutter for on-board computer vision.

The price includes UAV assembling, integration of sensors, controller tuning and in-flight testing.

Price

3990 Euro*

* 30% discount for academic institutions upon request

Order

Middle-size platform with RTK GPS

A ready-to-fly unmanned aerial system with a DJI F550 frame, NUC PC with 8GB RAM, 128 GB SSD and WiFi, Pixhawk 2.1 with GPS, RTK GPS Tersus (on-board module + ground station), 3D camera RealSense 2 for obstacle detection, 9-channel RC set compatible with Hitec AFHSS for safety pilots and switching between different operation modes, a rangefinder pointing down to enable precise operation close to ground, mvBlueFOX-MLC200wG camera with a global shutter for on-board computer vision.

The price includes UAV assembling, integration of sensors, controller tuning and in-flight testing.

Price

9990 Euro*

* 30% discount for academic institutions upon request

Order

Full-equipped large-size platform

A ready-to-fly unmanned aerial system with a Tarot T18 frame, NUC PC with 8GB RAM, 128 GB SSD and WiFi, Pixhawk 2.1 with GPS, 3D camera RealSense 2 for obstacle detection, Garmin Sweep V1, 9-channel RC set compatible with Hitec AFHSS for safety pilots and switching between different operation modes, a rangefinder pointing down to enable precise operation close to ground, mvBlueFOX-MLC200wG camera with a global shutter for on-board computer vision.

The price includes UAV assembling, integration of sensors, controller tuning and in-flight testing.

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