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The more intelligent and autonomous robotics systems become, the more attractive—and vulnerable—they are to cyber threats.
A new breakthrough shows how robots can now integrate both sight and touch to handle objects with greater accuracy, similar to humans.
Imagine a world where you can track the precise location of an object or person in real time, even in the most complex environments. With the rise of ultra-wideband (UWB) technology, this is no longer ...
For all their technological brilliance, from navigating distant planets to performing complex surgery, robots still struggle ...
ViTa-Zero intros zero-shot visuotactile 6D pose estimation, combining vision, touch, and proprioception to boost perception ...
According to Precedence Research, the global autonomous vehicle market size will grow from USD 273.75 billion in 2025 to ...
PIERRE, SD (KELO) — The South Dakota Highway Patrol has a new tool that the department says will make vehicle pursuits safer for both the public and law enforcement. According to a news release, the ...
Bionic flexible structures are the core technology for embodied intelligent robots to achieve biological-like movement and interact with complex environments. The design inspiration comes from the ...
With the launch of League of Legends patch 25.17, the developers have now introduced a new tracking system to help players get information about jungle objectives. While the update will not affect the ...
In his decades-long career in tech journalism, Dennis has written about nearly every type of hardware and software. He was a founding editor of Ziff Davis’ Computer Select in the 1990s, senior ...
According to Precedence Research, the global AI robots market size is projected to reach nearly USD 124.26 billion by 2034 ...
Tech Xplore on MSN
Physical AI uses both sight and touch to manipulate objects like a human
In everyday life, it's a no-brainer to be able to grab a cup of coffee from the table. Multiple sensory inputs such as sight (seeing how far away the cup is) and touch are combined in real-time.
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