The brain is able to solve complex tasks in real time by combining different sensory cues with previously acquired knowledge. Inspired by the brain, we designed a neuromorphic demonstrator which combines auditory and visual input to find an obstacle free direction closest to the sound source. The system consists of two event-based sensors (the eDVS for vision and the NAS for audition) mounted onto a pan-tilt unit and a spiking neural network implemented on the SpiNNaker platform. By combining the different sensory information, the demonstrator is able to point at a sound source direction while avoiding obstacles in real time.<br/
This software presents diverse utilities to perform the first post-processing layer taking the neuro...
Bats are known for their ability to pursue a goal while avoiding obstacles in a cluttered environmen...
Current advancements in both technology and science allow us to manipulate our sensory modalities in...
The brain is able to solve complex tasks in real time by combining different sensory cues with previ...
The brain is able to solve complex tasks in real time by combining different sensory cues with previ...
Animals combine various sensory cues with previously acquired knowledge to safely travel towards a ...
This live demonstration presents an audio-guided neuromorphic robot: from a Neuromorphic Auditory S...
Autonomous robots have become a very popular topic within the artificial intelligence field. These ...
This live demonstration presents a sound source localization and tracking system implemented with S...
Sound source localization (SSL) is used in various applications such as industrial noise-control, sp...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
Directivity in hearing aid systems is normally achieved with the use of multiple microphones in an a...
This paper presents the first robotic system featuring audio-visual (AV) sensor fusion with neuromor...
In living organisms, sensory and motor processes are distributed, locally merged, and capable of for...
International audienceRecent advances in new technologies offer a large range of innovative instrume...
This software presents diverse utilities to perform the first post-processing layer taking the neuro...
Bats are known for their ability to pursue a goal while avoiding obstacles in a cluttered environmen...
Current advancements in both technology and science allow us to manipulate our sensory modalities in...
The brain is able to solve complex tasks in real time by combining different sensory cues with previ...
The brain is able to solve complex tasks in real time by combining different sensory cues with previ...
Animals combine various sensory cues with previously acquired knowledge to safely travel towards a ...
This live demonstration presents an audio-guided neuromorphic robot: from a Neuromorphic Auditory S...
Autonomous robots have become a very popular topic within the artificial intelligence field. These ...
This live demonstration presents a sound source localization and tracking system implemented with S...
Sound source localization (SSL) is used in various applications such as industrial noise-control, sp...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
Directivity in hearing aid systems is normally achieved with the use of multiple microphones in an a...
This paper presents the first robotic system featuring audio-visual (AV) sensor fusion with neuromor...
In living organisms, sensory and motor processes are distributed, locally merged, and capable of for...
International audienceRecent advances in new technologies offer a large range of innovative instrume...
This software presents diverse utilities to perform the first post-processing layer taking the neuro...
Bats are known for their ability to pursue a goal while avoiding obstacles in a cluttered environmen...
Current advancements in both technology and science allow us to manipulate our sensory modalities in...