A soft armband that lets you steer a robot while you sprint on a treadmill or bob on rough seas sounds like science fiction.
Developed at the University of California San Diego, the system pairs soft, stretchable sensors with a deep-learning engine ...
A new wearable system uses stretchable electronics and artificial intelligence to interpret human gestures with high accuracy even in chaotic, high-motion environments.
Engineers at the University of California San Diego have developed a next-generation wearable system that enables people to ...
Traditionally, robot arms have been controlled either by joysticks, buttons, or very carefully programmed routines. However, for [Narongporn Laosrisin’s] homebrew build, they decided to go with ...
Human–robot interaction (HRI) and gesture-based control systems represent a rapidly evolving research field that seeks to bridge the gap between human intuition and robotic precision. This area ...
A robotic arm capable of mimicking hand gestures through data analysis of the mechanical activity of the muscles, using wearable piezoelectric sensors was developed. Piezoelectric discs were placed in ...