Robotic Highway Safety Markers

The Robotic Highway Safety Markers system was developed by Shane Farritor a Professor at University of Nebraska-Lincoln. The Robotic Safety Barrel (RSB) replaces the heavy base of a typical safety barrel with a mobile robot. The mobile robot can transport the safety barrel and robots can work in teams to provide traffic control. Independent, autonomous barrel motion has several advantages.

First, the barrels can self-deploy, eliminating the dangerous task of manually placing barrels in busy traffic. To save costs, the robots work in teams. A more expensive "shepherd" robot with built-in Global Positioning System (GPS) navigation would position itself precisely, and then guide the placement of less expensive units, which measure out their positions based on wheel movement (a "dead reckoning" system). In tests, the robots were able to deploy themselves just about as well as humans could place them - their big wheels let them turn on a dime.

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FAULHABER Drive Systems at the Robotics Summit & Expo in Boston from April 30 to May 1 in Hall C at Booth 534

FAULHABER Drive Systems at the Robotics Summit & Expo in Boston from April 30 to May 1 in Hall C at Booth 534

Faulhaber will be presenting their drive systems for robotics and smart technology. Robots are versatile and can be found in many areas, for example, transporting goods, operating on patients or supporting the agriculture industry. With the help of robots, processes can be automated, the flow of materials optimized and employees relieved. Equipped with FAULHABER drive systems, these robots can take on tasks where the demands on function and applications are high.