Site navigation

The AI Tech That Will Stop Autonomous Drones From Crashing

Michael Edgar

,

AI Drones UAS
AI-powered systems to help navigate drones as uncrewed aircraft systems (UAS) expect to surge in coming years. 

The global UAS market size is predicted to grow to around £39.2 billion by 2030, up from £21.9bn last year. This means that Hundreds of thousands, if not millions, of autonomous drones will be operating in uncontrolled airspace below 400 feet altitude, performing a wide range of tasks, including package delivery, traffic monitoring, and emergency assistance.

In response to this, researchers at the Institute for Assured Autonomy, used artificial intelligence (AI) to model a system that could orchestrate this increase in traffic.

“We wanted to see if different approaches using AI could handle the expected scale of these operations in a safe manner, and it did,” said Lanier Watkins, a researcher at the Institute for Assured Autonomy to techxplore.

“Our simulated system leverages autonomy algorithms to enhance the safety and scalability of UAS operations below 400 feet altitude.”

The team evaluated the impact of autonomous algorithms in a simulated 3D airspace, drawing on previous research on collision avoidance algorithms. The findings revealed that inclusion of strategic deconfliction algorithms substantially improved safety and almost eliminated airspace accidents completely. 

To test real-world conditions, the researchers introduced ‘noisy sensors’ and a ‘fuzzy inference system’ which mimic unpredictable conditions and allows the drones to calculate risk on various factors such as proximity to obstacles and adherence to planned routes. 


Recommended reading


“Our study considered a variety of variables, including scenarios that involve ‘rogue drones’ that deviated from their planned routes. The results are very promising,” said Louis Whitcomb, another researcher at the Institute for Assured Autonomy with techxplore

Going forward the researchers plan to enhance simulations with more dynamic obstacles like weather. 

“This work helps researchers understand how autonomy algorithms that protect airspace can behave when faced with noise and uncertainty in 3D-simulated airspace and underscores the need to continuously monitor the results from these autonomous algorithms to ensure they have not reached potential failure states,” continued Watkins. 

Michael Edgar

Staff Writer, DIGIT

Latest News

AI

Nvidia Launches Open Secure AI Alliance for AI Safety and Security

AI Business Recruitment

Nearly a Quarter of Orgs Reducing Entry-level Hiring Due to AI Automation

Business

Scottish Businesses Turn to Self-funding as Growth Confidence Dips in H2

Data Finance

Payment Leaders are Struggling to Get Real-time Data