US scientists are building a $12 million 'digital brain' for drones inspired by insects

World News, Today World News, Latest International News, World Breaking News, Trending News of World - Times of India · collected 2026-08-21 · by TOI Science Desk
Read the original at World News, Today World News, Latest International News, World Breaking News, Trending News of World - Times of India ↗

Summary

A $12 million research project at Penn State is developing an onboard sensing system for drones inspired by insect brains. The team, led by Saptarshi Das, aims to create a system that can process signals locally without sending large amounts of data to external computers, using analogue computing and graphene-based components to reduce power consumption. The proposed system will allow drones to filter out background information and focus on relevant patterns, enabling them to make decisions closer to where the information is collected. According to Das, this technology could be particularly useful for drones operating in remote locations with limited communication capabilities.
Written by the local model on 2026-08-21, using this article's own text rather than the other coverage of the same event (that is the story summary below).

Signals How these are calculated →

Claims extracted
34
claim-shaped sentences
Uncertain
26%
9 of 34 hedged
Leaning
not political
takes no side on a contested political question
Publisher trust
94.0
red-flag proxy, not a credibility rating
Outlets on this story
1
Technology
Narrative spread
1
articles carrying this framing
Analyzed 2026-08-21 · how these are computed

AI analysis (generated at analysis time, not now)

Story summary

Scientists at Penn State, led by Saptarshi Das, are working on a $12 million project to develop a digital brain for drones inspired by the processing abilities of insects. The goal is to create an onboard sensing system that can identify useful information without sending large amounts of data to external computers, which would save power and improve efficiency. The team is studying how animals like locusts and owls filter sensory information despite having small brains. Their proposed system uses analogue computing, graphene-based components, and memristors to process signals while using less power. This would allow drones to respond to specific combinations of signals rather than processing everything they encounter. The research is funded by the US Army's Army Research Laboratory and aims to eventually lead to larger drone swarms that can operate independently.

Written for “Artificial Insect Intelligence” on 2026-08-31, grounded in this article and the 0 other(s) covering the same event.
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No political leaning scored for article 1854 · logged 2026-08-28

Story

📰 Artificial Insect Intelligence
Technology · 1 article(s) covering the same event. This is the one the site leads with.

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World News, Today World News, Latest International News, World Breaking News, Trending News of World - Times of India · 97 article(s) · 0 correction(s) detected
SignalValueWeight
Correction rate 0.000 0.4
Uncertainty density 0.121 0.25
Assertive mismatch rate 0.000 0.35
No corrections detected for this publisher. That may mean careful reporting, or simply that nothing has been checked.

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TOI Science Desk
19 article(s) here · 1 carrying a prediction
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Topics

Army Research Laboratory Penn State Penn State College of Engineering the US Army’s

Subjects

Penn State ORG · 3× Saptarshi Das PERSON · 2× Army Research Laboratory ORG · 1× Das PERSON · 1× Penn State College of Engineering ORG · 1× the US Army’s ORG · 1×

Narrative

The researchers plan to use graphene-based field-effect transistors to reproduce the behaviour of coincidence detectors, which only produce a response when two or more inputs occur at the same time or in quick succession.
framing: mixed · carried by 1 article(s) · first seen 2026-08-21
🔮 Their proposed system would use analogue computing, graphene-based components and memristors to process signals while using less power.
2026-08-21 · World News, Today World News, Latest International News, World Breaking News, Trending News of World - Times of India
US scientists are building a $12 million 'digital brain' for drones inspired by insects · mixed framing

Claims (34 extracted, 9 hedged)

A $12 million research project at Penn State is trying to give drones a new way of making decisions, drawing inspiration from the small brains of insects and other animals. asserted
project → try → insects
Funded by the US Army’s Army Research Laboratory, the project aims to develop an onboard sensing system that can pick out useful information without sending large amounts of data to external computers. asserted
that → fund → computers
The team, led by Saptarshi Das, is studying how animals such as locusts and owls filter sensory information despite having tiny brains. asserted
animals → lead → brains
Their proposed system would use analogue computing, graphene-based components and memristors to process signals while using less power. asserted
system → propose → power
A cochlea-inspired structure would help filter information before it reaches conventional digital processing. asserted
it → inspire → processing
The researchers also plan circuits that mimic coincidence-detecting neurons, allowing drones to respond to combinations of signals rather than processing everything they encounter. asserted
they → plan → everything
Annual demonstrations will gradually move from individual prototypes towards larger drone swarms. asserted
demonstrations → move → swarms
How insect brains could help drones process sensory information The researchers are looking at animals such as locusts and owls because their brains can deal with sensory information despite being extremely small. uncertain
brains → help → information
Instead of treating every sound, movement or visual signal as equally important, biological systems can filter out background information and focus on patterns that matter. asserted
that → treat → patterns
The Penn State team wants to reproduce some of that behaviour using electronic circuits, creating a sensing system capable of making decisions closer to where the information is collected. asserted
information → want → decisions
The project is led by Saptarshi Das, an engineering science professor at Penn State, with researchers from several universities. asserted
project → lead → universities
According to Penn State College of Engineering, the proposed system is intended for edge devices such as drones and ground robots and operates without a connection to cloud computing. uncertain
system → accord → computing
Das explained that a drone could be working in a remote location where communication is unavailable or where transmitting data would reveal its position. uncertain
transmitting → explain → position
The proposed technology is therefore designed to give the machine computing capability directly onboard. asserted
technology → propose → capability
Image AI generated Analogue computing could help drones process signals using less power One of the biggest changes in the proposed design is the decision to process some information in the analogue domain. uncertain
One → generate → domain
A drone's sensors initially collect physical signals, but conventional systems often convert those signals into digital information before computers can analyse them. asserted
computers → collect → them
That conversion and subsequent processing can require substantial power, particularly when the incoming information is broad and continuous. asserted
information → require → power
The researchers plan to use a sensing structure inspired by the human cochlea to deal with signals before they reach conventional digital processing. asserted
they → plan → processing
The design would combine graphene-based components with silicon semiconductors and memristors, using electrical currents to carry out aspects of the computation. asserted
design → combine → computation
The idea is to reduce unnecessary conversion between analogue signals and digital data, while allowing the system to process a larger amount of information using less energy. asserted
system → reduce → energy
How coincidence-detecting neurons could help drones identify important signals The proposed system would also imitate the way certain neurons respond when multiple signals arrive close together. uncertain
signals → detect → way
The researchers plan to use graphene-based field-effect transistors to reproduce the behaviour of coincidence detectors, which only produce a response when two or more inputs occur at the same time or in quick succession. asserted
inputs → plan → succession
That could help the sensing node distinguish meaningful combinations of signals from isolated or irrelevant information. uncertain
node → help → information
The same principle is intended to make autonomous machines more selective about what they process. asserted
they → intend → what
Instead of constantly handling every signal detected by their sensors, drones could concentrate computational resources on patterns that trigger the appropriate response. uncertain
that → handle → response
The researchers are also developing a communication method based on noise-like signals for drone swarms. asserted
researchers → develop → swarms
Messages would be embedded within broader electromagnetic activity, making them resemble background noise while allowing cooperating machines to identify the intended information. asserted
machines → embed → information
Researchers plan annual demonstrations to test the $12 million technology on autonomous drones The $12 million project will not be tested as a complete swarm system immediately. asserted
project → plan → system
The researchers plan to hold demonstrations each year as the technology develops, with testing expected to progress from an individual prototype towards larger-scale experiments involving multiple autonomous drones. asserted
testing → plan → drones
This will allow the team to examine whether the sensing, computing and communication components can work together while remaining within strict limits on size, weight and power. asserted
components → allow → size
The proposed technology could eventually have uses beyond airborne drones and ground robots. uncertain
technology → propose → drones
The team believes similar low-power sensing and processing could support groups of autonomous machines that need to operate together without relying heavily on external infrastructure. uncertain
that → believe → infrastructure
For now, however, the project remains under development, with the planned demonstrations set to show whether the biological principles can be translated into practical hardware. asserted
principles → remain → hardware
As Das explained, the challenge is bringing several capabilities together in one compact system while keeping its energy requirements low. asserted
challenge → explain → requirements
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