A team led by the UW has developed Smellicopter: an autonomous drone that uses a live antenna from a moth to navigate toward smells. Smellicopter can also sense and avoid obstacles as it travels through the air.


A team led by the UW has developed Smellicopter: an autonomous drone that uses a live antenna from a moth to navigate toward smells. Smellicopter can also sense and avoid obstacles as it travels through the air.

Researchers at the ÌìÃÀÓ°ÊÓ´«Ã½ have developed a tiny wireless steerable camera that can ride aboard an insect or an insect-sized robot.

Farmers can already use drones to soar over huge fields and monitor temperature, humidity or crop health. But these machines need so much power to fly that they can’t get very far without needing a charge. Now, engineers at the ÌìÃÀÓ°ÊÓ´«Ã½ have created a sensing system that is small enough to ride aboard a bumblebee.

Engineers at the ÌìÃÀÓ°ÊÓ´«Ã½ have created RoboFly, the first wireless flying robotic insect. This might be one small flap for a robot, but it’s one giant leap for robot-kind.

A new study co-authored by a ÌìÃÀÓ°ÊÓ´«Ã½ mechanical engineer demonstrates how flying insect-sized robots can land and stick to surfaces, which conserves energy and extends flight times.