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Home - Robotics & Automation - Harvard’s RoboBee Learns to Land with Crane Fly Impressed Legs
Robotics & Automation

Harvard’s RoboBee Learns to Land with Crane Fly Impressed Legs

NextTechBy NextTechJune 16, 2025No Comments3 Mins Read
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Harvard’s RoboBee Learns to Land with Crane Fly Impressed Legs
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Even if you happen to’ve constructed one of many world’s most superior insect-inspired micro air automobiles (MAVs), it finally will not be that helpful if it may’t stick a superb touchdown. That is why scientists at Harvard College have now given their RoboBee a set of lengthy, jointed legs very like these of the crane fly.

For these of you who’re unfamiliar with the RoboBee, it is a bee-inspired robotic that flies by flapping a tiny pair of artificial-muscle-equipped wings. It has a wingspan of lower than 3 cm (1.2 in) and weighs solely a few tenth of a gram … though it is related to an influence supply and a microprocessor through a wire.

That mentioned, future variations could finally be totally self-contained. The truth is, there’s already one variant that is solar-powered.

Though different incarnations of the little robotic have confirmed able to feats reminiscent of flying underwater and perching on overhangs, the bottom mannequin has by no means been that nice at merely touchdown on flat (or different) surfaces. It’s because vortices created by its flapping wings trigger air turbulence as they change into confined towards the bottom, which may in flip knock the bot off stability.

“Beforehand, if we had been to go in for a touchdown, we’d flip off the car a bit of bit above the bottom and simply drop it, and pray that it’ll land upright and safely,” says engineering graduate pupil Christian Chan, who led the mechanical redesign of the robotic.

The crane fly is already recognized for its capacity to execute smooth landings

Depositphotos

The RoboBee’s 4 new crane-fly-inspired legs are lengthy and versatile sufficient that they’ll all safely make contact with the bottom earlier than the bot’s major physique turns into affected by the bottom impact turbulence.

Moreover, a brand new management algorithm helps information the robotic extra easily to the bottom, as an alternative of permitting it to “simply drop.”

A multiple exposure of the RoboBee using its new legs to take off from one leaf and land on another
A a number of publicity of the RoboBee utilizing its new legs to take off from one leaf and land on one other

Harvard John A. Paulson College of Engineering and Utilized Sciences

“In search of bioinspiration throughout the wonderful range of bugs gives us numerous avenues to proceed enhancing the robotic,” says postdoctoral researcher Alyssa Hernandez, co-author of a paper on the research. “Reciprocally, we are able to use these robotic platforms as instruments for organic analysis, producing research that check biomechanical hypotheses.”

The paper was not too long ago revealed within the journal Science Robotics. You may see the RoboBee in crane-fly-inspired touchdown motion, within the following video.

RoboBee impressed by crane flies

Supply: Harvard John A. Paulson College of Engineering and Utilized Sciences



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