We present a biologically inspired sound localisation system for reverberant environments using the Cascade of Asymmetric Resonators with Fast-Acting Compression (CAR-FAC) cochlear model. The system exploits a CAR-FAC pair to pre-process binaural signals that travel through the inherent delay line of the cascade structures, as each filter acts as a delay unit. Following the filtering, each cochlear channel is cross-correlated with all the channels of the other cochlea using a quantised instantaneous correlation function to form a 2-D instantaneous correlation matrix (correlogram). The correlogram contains both interaural time difference and spectral information. The generated correlograms are analysed using a regression neural network for l...
The front end of the human auditory system, the cochlea, converts sound signals from the outside wor...
A novel end-to-end binaural sound localisation approach is proposed which estimates the azimuth of a...
The long-term goal of this research is to understand the neural mechanisms that mediate the ability ...
We present a biologically inspired sound localisation system for reverberant environments using the ...
We propose a biologically inspired binaural sound localization system for reverberant environments. ...
We propose a biologically inspired binaural sound localization system using a deep convolutional neu...
A neuromorphic sound localisation system is presented. It employs two microphones and a pair of sili...
A neuromorphic sound localization system is presented. It employs two microphones and a pair of sili...
This thesis presents spiking neural architectures which simulate the sound localisation capability o...
This paper outlines the development of a crosscorrelation algorithm and a spiking neural network (SN...
This paper examines the role of biological constraints in the human audi-tory localization process. ...
Despite there being clear evidence for attentional effects in biological spatial hearing, relatively...
It has always intrigued man as to how the human body performs so many complicated functions with the...
Localizing the origin of a sound source is a useful but demanding task. It provides valuable informa...
In the mammalian auditory pathway, the cochlea is the first stage of processing where the incoming s...
The front end of the human auditory system, the cochlea, converts sound signals from the outside wor...
A novel end-to-end binaural sound localisation approach is proposed which estimates the azimuth of a...
The long-term goal of this research is to understand the neural mechanisms that mediate the ability ...
We present a biologically inspired sound localisation system for reverberant environments using the ...
We propose a biologically inspired binaural sound localization system for reverberant environments. ...
We propose a biologically inspired binaural sound localization system using a deep convolutional neu...
A neuromorphic sound localisation system is presented. It employs two microphones and a pair of sili...
A neuromorphic sound localization system is presented. It employs two microphones and a pair of sili...
This thesis presents spiking neural architectures which simulate the sound localisation capability o...
This paper outlines the development of a crosscorrelation algorithm and a spiking neural network (SN...
This paper examines the role of biological constraints in the human audi-tory localization process. ...
Despite there being clear evidence for attentional effects in biological spatial hearing, relatively...
It has always intrigued man as to how the human body performs so many complicated functions with the...
Localizing the origin of a sound source is a useful but demanding task. It provides valuable informa...
In the mammalian auditory pathway, the cochlea is the first stage of processing where the incoming s...
The front end of the human auditory system, the cochlea, converts sound signals from the outside wor...
A novel end-to-end binaural sound localisation approach is proposed which estimates the azimuth of a...
The long-term goal of this research is to understand the neural mechanisms that mediate the ability ...