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MathWorks is pleased to sponsor the 2014 IMAV Student Competition. MathWorks will provide software, training, and access to MathWorks engineering mentors and technical support to teams who have completed the Student Competition Software Request Form below. Below is an intro video showing the quadrotor indoor competition model in action, and a second video explaining the software offer and how to setup the quadrotor project: The support we provide to help your team succeed in 2014 includes: 1. Complimentary Access to MATLAB &Simulink Your team is eligible for an offer of Complimentary Software License(s). Find details and information below. 2. Complimentary Online training Your team can take advantage of the various online software training materials. There are a total of five tutorials, narrated by specialists from MathWorks that include interactive exercises to reinforce learning. IMAV Training Resource Page Get started with resources for learning and classroom instruction, and explore the MathWorks products available for this competition.

If you have any technical questions or would like more information on training or support possibilities please contact me at Paul.Cox@mathworks.fr. Here are the products we will be providing that you may have access to: Computer Vision System Toolbox Model Predictive Control Toolbox Partial Differential Equation Toolbox Phased Array System Toolbox Simulink Verification and Validation Activation Type: Designated Computer A team leader for your team should review and complete the Student Competition Software Request Form to take advantage of our software offer. Best of luck in your preparation! MathWorks Student Competition Program Specialist TAROS 2015: Towards Autonomous Robotic Systems pp 69-81From AgentSpeak to C for Safety Considerations in Unmanned Aerial VehiclesFirst Online: 18 July 2015DOI: 9287 of the book series Lecture Notes in Computer Science (LNCS)Cite this paper as: Bucheli S., Kroening D., Martins R., Natraj A. (2015) From AgentSpeak to C for Safety Considerations in Unmanned Aerial Vehicles.

In: Dixon C., Tuyls K. (eds) Towards Autonomous Robotic Systems. Lecture Notes in Computer Science, vol 9287. Springer, ChamAbstractUnmanned aerial vehicles (UAV) are becoming increasingly popular for both recreational and industrial applications, leading to growing concerns about safety. Autonomous systems, such as UAVs, are typically hybrid systems consisting of a low-level continuous control part and a high-level discrete decision making part. In this paper, we discuss using the agent programming language AgentSpeak to model the high-level decision making.
mq 27 dragonfire drone not workingWe present a translation from AgentSpeak to C that bridges the gap between high-level decision making and low-level control code for safety-critical systems.
ar drone 2 ultraschallThis allows code to be written in a more natural high-level language, thereby reducing its overall complexity and making it easier to maintain, while still conforming to safety guidelines.
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As an exemplar, we present the code for a UAV autopilot. The generated code is evaluated on a simulator and a Parrot AR.Drone, demonstrating the flexibility and expressiveness of AgentSpeak as a modeling language for UAVs.Copyright informationCommunicationLe propre d'un robot est de pouvoir communiquer. Soit entre ses composants, soit avec d'autres robots ou ordinateurs distants. Retrouvez ici tous les éléments de communication radio ou filaire pour votre robot.
microdrones md4-1000 batteryQue vous utilisiez des protocoles radio standards Xbee, Bluetooth, Wifi ou bien que vous ayez besoin de module de communication série (USB, FTDI, RS232, CAN...), vous trouverez ici les éléments dont votre projet robotique a besoin.
ar drone 2 verbindet nichtSous-catégories Voici un choix de hub USB ou Ethernet pour vos projets de robotique Voir tous les produits Découvrez notre série d'adaptateurs et de convertisseurs pour faciliter la communication des différents modules de votre projet robotique Voir tous les produits Communication sans fil, modules radio, Xbee, Bluetooth, Wifi...
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Voici tout ce dont vous avez besoin pour ajouter de la connectivité sans fil à votre robot programmable. Voir tous les produits La technologie RFID (ou NFC) est de plus en plus utilisée en robotique. Ne passez pas à côté et imaginez des usages avancés à l'aide de ces lecteurs et cartes RFID. Voir tous les produitsIn a robot lab at TEDGlobal, Raffaello D'Andrea demos his flying quadcopters: robots that think like athletes, solving physical problems with algorithms that help them learn. In a series of nifty demos, D'Andrea show drones that play catch, balance and make decisions together — and watch out for an I-want-this-now demo of Kinect-controlled quads. Raffaello D'Andrea explores the possibilities of autonomous technology by collaborating with artists, engineers and entrepreneurs. Since demoing his robots at TED, Raffaello D'Andrea has designed quadcopters that are even stronger and smarter than before. Here, three new features. In art, drones can be magical.