Search Intent Brief: We are looking for ways to make interaction with our vehicles natural and intuitive. This video illustrates a Hough transform based method implemented in Matlab using imfindcircles to process

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This video illustrates a Hough transform based method implemented in Matlab using imfindcircles to process Control with visual feedback where a drone follows a mobile robot that carries a visual pattern (September 2017) We are looking for ways to make interaction with our vehicles natural and intuitive.

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We are looking for ways to make interaction with our vehicles natural and intuitive. HMC Core Robotics Lab (4/30/2014) - Morgan Mastrovich and Sherman Lam We control a

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Experiment taken at the Controls Lab for Distributed and Uncertain Systems of the Aerospace Engineering department of the ...

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  • HMC Core Robotics Lab (4/30/2014) - Morgan Mastrovich and Sherman Lam We control a
  • Experiment taken at the Controls Lab for Distributed and Uncertain Systems of the Aerospace Engineering department of the ...
  • We are looking for ways to make interaction with our vehicles natural and intuitive.
  • Control with visual feedback where a drone follows a mobile robot that carries a visual pattern (September 2017)

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Helpful Image Notes

Kinect + OpenCV quadrotor flight
Interaction with a Quadrotor via the Kinect, ETH Zurich
Final Project - Tracking a Quadcopter with a Kinect and OpenCV
Kinect + OpenCV quadrotor control test 2
Quadrotor & Kinect Obstacle Avoidance ( Quadrotor flying and depthmap view )
Quadcopter position tracking using Kinect 360 and OpenCV
[Raw video] Flying a quadrotor with 3D vision through a corridor
Quadrotor Flight Mode Based on Computer Vision for Tracking using ROS
Kinect-Based Quadcopter Localization using Circle Tracking - Vertical and Planar Motion
Autonomous Flight with a Kinect
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Browse Full Context
Kinect + OpenCV quadrotor flight

Kinect + OpenCV quadrotor flight

Read more details and related context about Kinect + OpenCV quadrotor flight.

Interaction with a Quadrotor via the Kinect, ETH Zurich

Interaction with a Quadrotor via the Kinect, ETH Zurich

We are looking for ways to make interaction with our vehicles natural and intuitive. With this in mind we implemented a demo for ...

Final Project - Tracking a Quadcopter with a Kinect and OpenCV

Final Project - Tracking a Quadcopter with a Kinect and OpenCV

HMC Core Robotics Lab (4/30/2014) - Morgan Mastrovich and Sherman Lam We control a

Kinect + OpenCV quadrotor control test 2

Kinect + OpenCV quadrotor control test 2

Read more details and related context about Kinect + OpenCV quadrotor control test 2.

Quadrotor & Kinect Obstacle Avoidance ( Quadrotor flying and depthmap view )

Quadrotor & Kinect Obstacle Avoidance ( Quadrotor flying and depthmap view )

Read more details and related context about Quadrotor & Kinect Obstacle Avoidance ( Quadrotor flying and depthmap view ).

Quadcopter position tracking using Kinect 360 and OpenCV

Quadcopter position tracking using Kinect 360 and OpenCV

Experiment taken at the Controls Lab for Distributed and Uncertain Systems of the Aerospace Engineering department of the ...

[Raw video] Flying a quadrotor with 3D vision through a corridor

[Raw video] Flying a quadrotor with 3D vision through a corridor

Read more details and related context about [Raw video] Flying a quadrotor with 3D vision through a corridor.

Quadrotor Flight Mode Based on Computer Vision for Tracking using ROS

Quadrotor Flight Mode Based on Computer Vision for Tracking using ROS

Control with visual feedback where a drone follows a mobile robot that carries a visual pattern (September 2017)

Kinect-Based Quadcopter Localization using Circle Tracking - Vertical and Planar Motion

Kinect-Based Quadcopter Localization using Circle Tracking - Vertical and Planar Motion

This video illustrates a Hough transform based method implemented in Matlab using imfindcircles to process

Autonomous Flight with a Kinect

Autonomous Flight with a Kinect

Read more details and related context about Autonomous Flight with a Kinect.