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Parrot AR.Drone
Known as:
AR.Drone
Parrot AR.Drone is a remote controlled flying quadcopter helicopter built by the French company Parrot. The drone is designed to be controlled by…
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Android
App Store
Application programming interface
Augmented reality
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Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2017
Highly Cited
2017
Automatic navigation and landing of an indoor AR. drone quadrotor using ArUco marker and inertial sensors
Mohammad Fattahi Sani
,
G. Karimian
International Conference on Computer and Drone…
2017
Corpus ID: 44594131
Within the next few years, unmanned quadrotors are likely to become an important vehicle in humans' daily life. However, their…
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Highly Cited
2017
Highly Cited
2017
Autonomous Wireless Self-Charging for Multi-Rotor Unmanned Aerial Vehicles
A. Junaid
,
Aleksay Konoiko
,
Y. Zweiri
,
M. Sahinkaya
,
L. Seneviratne
2017
Corpus ID: 9277100
Rotary-wing unmanned aerial vehicles (UAVs) have the ability to operate in confined spaces and to hover over point of interest…
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Highly Cited
2016
Highly Cited
2016
Controlling UAVs with Sensor Input Spoofing Attacks
Drew Davidson
,
Hao Wu
,
Robert Jellinek
,
Vikas Singh
,
T. Ristenpart
Workshop on Offensive Technologies
2016
Corpus ID: 1868004
There has been a recent surge in interest in autonomous robots and vehicles. From the Google self-driving car, to autonomous…
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Highly Cited
2016
Highly Cited
2016
Navigation and Cooperative Control Using the AR.Drone Quadrotor
L. V. Santana
,
A. Brandão
,
M. S. Filho
Journal of Intelligent and Robotic Systems
2016
Corpus ID: 5061689
This paper presents a computational system designed to perform autonomous indoor flights using low-cost equipment. Depending on…
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2015
2015
UAV obstacle avoidance using RGB-D system
M. Santos
,
L. V. Santana
,
A. Brandão
,
M. Sarcinelli-Filho
International Conference on Unmanned Aircraft…
2015
Corpus ID: 29033047
This work proposes an obstacle avoidance strategy for UAV navigation in indoor environments. The proposal is able to compute the…
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Highly Cited
2014
Highly Cited
2014
Human Control of UAVs using Face Pose Estimates and Hand Gestures
J. Nagi
,
A. Giusti
,
G. D. Caro
,
L. Gambardella
IEEE/ACM International Conference on Human-Robot…
2014
Corpus ID: 12853174
As a first step towards human and multiple-UAV interaction, we present a novel method for humans to interact with airborne UAVs…
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Highly Cited
2014
Highly Cited
2014
A trajectory tracking and 3D positioning controller for the AR.Drone quadrotor
Lucas Vago Santana
,
A. Brandão
,
M. Sarcinelli-Filho
,
R. Carelli
International Conference on Unmanned Aircraft…
2014
Corpus ID: 32523652
In this paper a complete framework is proposed, to deal with trajectory tracking and positioning with an AR.Drone Parrot…
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Highly Cited
2013
Highly Cited
2013
Framework for Autonomous On-board Navigation with the AR.Drone
Jacobo Jimenez Lugo
,
A. Zell
Journal of Intelligent and Robotic Systems
2013
Corpus ID: 16525054
We present a framework for autonomous flying using the AR.Drone low cost quadrotor. The system performs all sensing and…
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2012
2012
Modelling and Control of the Parrot AR.Drone
G. T. Martin
2012
Corpus ID: 86467399
The UAV Laboratory at UNSW Canberra has recently extended their fleet to include a Parrot AR.Drone quadrotor. It is the intent of…
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2001
2001
The breeding biology of Black-billed Parrot Amazona agilis and Yellow-billed Parrot Amazona collaria in Cockpit Country, Jamaica
S. Koenig
2001
Corpus ID: 85692843
Summary Black-billed Parrot Amazona agilis and Yellow-billed Parrot A. collaria are endemic to Jamaica and are restricted to…
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