“We, in a motorised world, have a lot to learn from the behavior of a school of fish in terms of each fish’s degree of freedom and safety within a school and high migration efficiency of a school itself. In EPORO, we recreated the behavior of a school of fish making full use of cutting-edge electronic technologies,” said Toshiyuki Andou, Manager of Nissan's Mobility Laboratory and principal engineer of the robot car project. “By sharing the surrounding information received within the group via communication, the group of EPOROs can travel safely, changing its shape as needed.”
This is the world’s first development of a robot car that can travel in a group by sharing the position and information of others within a group via communication technologies.
While Nissan’s ongoing research aims at creating collision-free vehicles based on its safety concept “Safety Shield*6,” new technologies used in EPORO also aim to improve migration efficiency of a group of vehicles and contribute to an environmentally friendly and traffic jam-free driving environment.
photo:Nissan
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This is the world’s first development of a robot car that can travel in a group by sharing the position and information of others within a group via communication technologies.
While Nissan’s ongoing research aims at creating collision-free vehicles based on its safety concept “Safety Shield*6,” new technologies used in EPORO also aim to improve migration efficiency of a group of vehicles and contribute to an environmentally friendly and traffic jam-free driving environment.
photo:Nissan






