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University turns cockroaches into cyborg surveyors

22 Nov 16 Researchers at North Carolina State University in the USA are developing a method for using insect cyborgs – also known as biobots – to map large, unfamiliar areas such as collapsed buildings after a disaster.

Cockroach surveyor
Cockroach surveyor

鈥淭he idea would be to release a swarm of sensor-equipped biobots 鈥 such as remotely controlled cockroaches 鈥 into a collapsed building or other dangerous, unmapped area,鈥 said Edgar Lobaton, an assistant professor of electrical and computer engineering at NC State and co-author of two papers describing the work.

The idea has been tested using small robots that simulate cockroach behaviour. The university has previously functional cockroach biobots.聽 鈥淭he next step is to replicate these experiments using biobots, which we鈥檙e excited about,鈥 said Lobaton.

The biobots would work with unmanned aerial vehicles (UAVs) to carry out the survey. 鈥淯sing remote-control technology, we would restrict the movement of the biobots to a defined area,鈥 said Lobaton. 鈥淭hat area would be defined by proximity to a beacon on a UAV. For example, the biobots may be prevented from going more than 20 meters from the UAV.鈥

The biobots would be allowed to move freely within a defined area and would signal researchers via radio waves whenever they got close to each other. Custom software would then use an algorithm to translate the biobot sensor data into a rough map of the unknown environment.

Once the program receives enough data to map the defined area, the UAV moves forward to hover over an adjacent, unexplored section. The biobots move with it, and the mapping process is repeated. The software program then stitches the new map to the previous one. This can be repeated until the entire region or structure has been mapped; that map could then be used by first responders or other authorities.

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鈥淭his has utility for areas 鈥 like collapsed buildings 鈥 where GPS can鈥檛 be used,鈥 said Lobaton. 鈥淎 strong radio signal from the UAV could penetrate to a certain extent into a collapsed building, keeping the biobot swarm contained. And as long as we can get a signal from any part of the swarm, we are able to retrieve data on what the rest of the swarm is doing. Based on our experimental data, we know you鈥檙e going to lose track of a few individuals, but that shouldn鈥檛 prevent you from collecting enough data for mapping.鈥

Co-lead author Alper Bozkurt, an associate professor of electrical and computer engineering at NC State, has previously developed functional cockroach biobots. However, to test their new mapping technology, the research team relied on inch-and-a-half-long robots that simulate cockroach behavior.

In their experiment, researchers released these robots into a maze-like space, with the effect of the UAV beacon emulated using an overhead camera and a physical boundary attached to a moving cart. The cart was moved as the robots mapped the area.

鈥淲e had previously developed proof-of-concept software that allowed us to map small areas with biobots, but this work allows us to map much larger areas and to stitch those maps together into a comprehensive overview,鈥 said Lobaton. 鈥淚t would be of much more practical use for helping to locate survivors after a disaster, finding a safe way to reach survivors, or for helping responders determine how structurally safe a building may be.鈥

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