Bringing AI research to wireless communications and sensing Qualcomm AI Research presents an overview of state-of-the-art research at the intersection of the two fields and offers a glimpse into the future of the wireless industry
ITU: Deep learning for physical layer wireless communication networks and sensing radio propagation channel characteristics and modeling approaches from below 6 GHz to the millimeter wave and THz spectrum bands, with a focus on AI/ML opportunities
Microsystems & Nanorobots Actuated by Light, Magnetic Fields, & 3D Ultrasound - Prof. Peer Fischer Micro Nano and Molecular Systems Lab Univ. of Stuttgart
Extreme NEMS - Opportunities at the Limits of the Nanoscale MIT Professor Farnaz Nirouri pushed the limits of miniaturizing MEMS with her work on nano-scale electromechanical systems (NEMS) devices
Bringing AI research to wireless communications and sensing Qualcomm AI Research presents an overview of state-of-the-art research at the intersection of the two fields and offers a glimpse into the future of the wireless industry
ITU: Deep learning for physical layer wireless communication networks and sensing radio propagation channel characteristics and modeling approaches from below 6 GHz to the millimeter wave and THz spectrum bands, with a focus on AI/ML opportunities
Extreme NEMS - Opportunities at the Limits of the Nanoscale MIT Professor Farnaz Nirouri pushed the limits of miniaturizing MEMS with her work on nano-scale electromechanical systems (NEMS) devices