
robotx.org
Maritime Robotx Challenge | AUVSI Foundation | Singapore Robotics Competition 2014Maritime Robotx Challenge
http://www.robotx.org/
Maritime Robotx Challenge
http://www.robotx.org/
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Maritime Robotx Challenge | AUVSI Foundation | Singapore Robotics Competition 2014 | robotx.org Reviews
https://robotx.org
Maritime Robotx Challenge
Photos & Videos | Maritime Robotx Challenge | AUVSI Foundation | Hawaii Robotics Competition 2016
http://www.robotx.org/index.php/video-gallery
Official Logo and Usage Guide. 2014 RobotX Final Standings. NEST Image Processing Primer. RobotX WAM-V Propulsion Examples. Lifting Instructions for WAM-V. 2016 Preliminary Rules and Tasks. 2016 Maritime RobotX Challenge Preliminary Task Descriptions (PDF). 2016 Maritime RobotX Challenge Preliminary Rules (PDF). Kill Switch Preliminary Specifications. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. 2014 Competition Photo Gallery.
Meet the Teams | Maritime Robotx Challenge | AUVSI Foundation | Hawaii Robotics Competition 2016
http://www.robotx.org/index.php/teams
Official Logo and Usage Guide. 2014 RobotX Final Standings. NEST Image Processing Primer. RobotX WAM-V Propulsion Examples. Lifting Instructions for WAM-V. 2016 Preliminary Rules and Tasks. 2016 Maritime RobotX Challenge Preliminary Task Descriptions (PDF). 2016 Maritime RobotX Challenge Preliminary Rules (PDF). Kill Switch Preliminary Specifications. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. 2014 Competition Photo Gallery.
RobotX Light Buoy Preliminary Specifications
http://www.robotx.org/index.php/2014-01-05-21-55-32/2014-09-17-15-54-12/robotx-light-buoy-preliminary-specifications
Official Logo and Usage Guide. 2014 RobotX Final Standings. NEST Image Processing Primer. RobotX WAM-V Propulsion Examples. Lifting Instructions for WAM-V. 2016 Preliminary Rules and Tasks. 2016 Maritime RobotX Challenge Preliminary Task Descriptions (PDF). 2016 Maritime RobotX Challenge Preliminary Rules (PDF). Kill Switch Preliminary Specifications. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. 2014 Competition Photo Gallery.
Pinger Preliminary Specifications
http://www.robotx.org/index.php/2014-01-05-21-55-32/2014-09-17-15-54-12/pinger-specs
Official Logo and Usage Guide. 2014 RobotX Final Standings. NEST Image Processing Primer. RobotX WAM-V Propulsion Examples. Lifting Instructions for WAM-V. 2016 Preliminary Rules and Tasks. 2016 Maritime RobotX Challenge Preliminary Task Descriptions (PDF). 2016 Maritime RobotX Challenge Preliminary Rules (PDF). Kill Switch Preliminary Specifications. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. 2014 Competition Photo Gallery.
Preliminary Maritime RobotX Challenge Scoring Guidance
http://www.robotx.org/index.php/2014-01-05-21-55-32/2014-09-17-15-50-36/preliminary-maritime-robotx-challenge-scoring-guidance
Official Logo and Usage Guide. 2014 RobotX Final Standings. NEST Image Processing Primer. RobotX WAM-V Propulsion Examples. Lifting Instructions for WAM-V. 2016 Preliminary Rules and Tasks. 2016 Maritime RobotX Challenge Preliminary Task Descriptions (PDF). 2016 Maritime RobotX Challenge Preliminary Rules (PDF). Kill Switch Preliminary Specifications. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. 2014 Competition Photo Gallery.
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forklift1 – Why yes, that is hot glue.
https://whyyesteam.wordpress.com/2016/11/28/shipping-the-boat/forklift1
Why yes, that is hot glue. Aerospace Systems Design Laboratory Marine Robotics Team. November 28, 2016. November 28, 2016. December 11th, 2016. First day of RobotX! Get in touch with us! Aerospace Systems Design Lab. 275 Ferst Drive NW. Atlanta, GA 30332-0150. Http:/ www.robonation.org/. Https:/ www.asdl.gatech.edu/. Blog at WordPress.com.
ERAU RobotX || Vehicle
http://www.eraurobotx.org/vehicle.html
Like all RobotX competitiors, Minion is based on the Wave Adaptive Modular Vessel (WAM-V) from Marine Advanced Research. The WAM-V features a pair of inflatable pontoons connected by a deck that holds Minion's sensors and computers. This design allows it to be rapidly disassembled for storage or shipment around the world. Visit Marine Advanced Research's website for more information on the WAM-V. Features of the WAM-V platform. The most unique feature of the WAM-V is the suspension connecting the deck ar...
ERAU RobotX || Team
http://www.eraurobotx.org/team.html
MEET THE ERAU TEAM. First water test of the ERAU WAM-V. (December 2013) From left: Dr. Charles Reinholtz, Hitesh Patel, Tim Zuercher, Dr. Patrick Currier, Eric DeMaso, Will Shaler, Chris Hockley, Dr. Eric Coyle, Chris Kennedy. Luis Malta serves as the control lead. He is responsible for developing a new and more efficient controlling system while modifying software that will control the behavior of the motors. Currently he is a junior and pursuing his B.S. in Aerospace Engineering. Brandon is a third yea...
ERAU RobotX || Partners
http://www.eraurobotx.org/partners.html
Contribution: Rugged Mobile Computer Systems. Contribution: Autonomous Vehicle Localization Solution. Contribution: Student Project Support. Contribution: 3D Scanning Laser Rangefinder. Contribution: Advanced Inertial Systems and Acoustic Solutions. Contribution: Engineering Expertise and Guidance. Contribution: Wire and Cable Equipment. Contribution: Precision Navigation Solutions. Contribution: Maritime GPS Corrections. Contribution: Printed Circuit Boards. You can make the difference;.
ERAU RobotX || Communications
http://www.eraurobotx.org/comms.html
About the Communications System. An independent direct command and control link is maintained with Minion at all times using a frequency hopping, spread spectrum, commercially available RC system. This system has the ability to command the platform to move from manual mode to either a paused state or an autonomous run mode as well as command the vehicle’s emergency stop functions. Email: Visit our contact page.
ERAU RobotX || Media
http://www.eraurobotx.org/media.html
Photos and Videos from the design and development of ERAU's RobotX Challenge Vehicle. Email: Visit our contact page.
ERAU RobotX || Sensors
http://www.eraurobotx.org/sensors.html
The primary sensors are mounted to a custom designed detachable aluminum sensor masted above the main deck. The mast provides an excellent field of view for the cameras and the Velodyne and ensures that their position does not change relative to the PinPoint's localization solution. This consideration is particularly important given that the sensor mast will not fit through the garage door into the team's lab and must be removed after every test. PinPoint Vehicle Positioning System. One unique property o...
ERAU RobotX || Computer System
http://www.eraurobotx.org/computer.html
About the Computer System. Minion’s software architecture uses an event driven, self-monitoring, distributed computer structure designed to allow for the buildup of features, a process called complexity through iteration. Minion is capable of multi-sensor state estimation, variable autonomy modes, intelligent trajectory planning, environmental disturbance rejection, external communication to multiple targets, and intelligent tasking. Features of the Computer System. Sensor Fusion and Decision Making.
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RobotX by Teamnet | Competitiveness Cluster in autonomous systems and robotics
See the world differently. Save more lives, cut down costs and reduce time to monitor large areas with the help of autonomous systems. Building a better future. Through highest quality robotics products. Produce UAV and UMV. The parteners in RobotX build a manufacturing facility to ensure the mass production. Design mini-UAV and UMV. The partners in RobotX designed and developed an integrated min- UAV system and an UMV. 100 unmanned aerial vehic. RobotX at Finnsec 2015. The success of this initiative is ...
Team MIT – Maritime RobotX Challenge
Also known as the "MIT/[Your-Company-Name-Here] RobotX Team! And as we learn, we're building a system that will continue to learn by exploring the waters of Massachusetts. What we build will impact not only MIT, but the marine autonomy community. Come 2018, our competition code will be released as open source for all to use and improve. So join us! Be it by following us on twitter, sponsoring us, or coming on board on the team, we invite you to partner with on our voyage. Designed by MageeWP Themes.
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robotx.net: Play :: Create :: Learn :: Share
Play : create : learn : share. Are you interested in using games to teach kids skills such as game design, graphic arts, sound engineering, writing, storytelling, marketing? Help us kickstart the robotx.net non-profit. RobotX Revolution Kickstart Party. Date and Time: Saturday July 12th, 6 pm to 8 pm. Place: 2000 NE 42nd Ave. Look for the blue MacPCX sign. Want to learn how to design a game? Give MacPCX a call at 503-512-0064 or contact us by email using this form:. Free Kids Game Design Training.
Maritime Robotx Challenge | AUVSI Foundation | Singapore Robotics Competition 2014
2014 Maritime RobotX Challenge Daily Updates. 2014 Competition Photo Gallery. Rules, Mission Tasks and Resources. Rules and Mission Tasks. RobotX Preliminary Rules and Task Descriptions. Kill Switch Preliminary Specifications. Preliminary Wireless Communications Protocol. Communications Protocol Test Script 1.0. Preliminary Maritime RobotX Challenge Journal Paper Guidelines. Preliminary Maritime RobotX Challenge Scoring Guidance. RobotX Light Buoy Preliminary Specifications. NEST Image Processing Primer.
OUXT
OUXTは Maritime RobotX Challenge. Osaka Union RobotX Team – Polaris が正式名称です。 各チームには長さ4mの双胴船と$25,000が支給され、それを元に推進器やセンサー、自動操縦のためのシステムを開発 搭載して自動操縦で5つのタス クに挑みます。 Http:/ www.robotx.org/. Minimize by Slocum Studio.
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Robot X Team Website. This is the website of the Robot X team for Fall 2007 Senior Project Lab @ SDSU.
RobotX - The professional forum of Robot-CH
2010: Rapperswil - Jona. Come and explore the world of robotics. Theme: "Mobile Robotics, and preparing the future of automated manufacturing in Switzerland". The event develops in the context of ROBOTS:10. Is the result of an initiative lead by Robot-CH as a response to the need of gathering a large variety of actors in order to meet the challenges of professional robotics. Swiss website for robotics in general. Cluster providing services to industy.
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