SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation of spiking neural networks. The largest realization of the architecture consists of one million general purpose processors, making it the largest neuromorphic computing platform in the world at the present time. Utilizing these processors efficiently requires expert knowledge of the architecture to generate executable code and to harness the potential of the unique inter-processor communications infra-structure that lies at the heart of the SpiNNaker architecture. This work introduces a software suite called SpiNNTools that can map a computational problem described as a graph into the required set of executables, application data and routing...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker (Spiking Neural Network Architecture) is a specialized computing engine, intended for real...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
This work presents sPyNNaker 4.0.0, the latest version of the software package for simulating PyNN-d...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
Abstract — SpiNNaker is a massively-parallel neuromorphic computing architecture designed to model v...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
While the adult human brain has approximately 8.8 × 1010 neurons, this number is dwarfed by its 1 × ...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
In this poster, we present a top-down methodology aimed at evaluating the scalability of Spiking Neu...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker (Spiking Neural Network Architecture) is a specialized computing engine, intended for real...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
This work presents sPyNNaker 4.0.0, the latest version of the software package for simulating PyNN-d...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
Abstract—This paper presents the algorithm and software developed for parallel simulation of spiking...
Abstract — SpiNNaker is a massively-parallel neuromorphic computing architecture designed to model v...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
While the adult human brain has approximately 8.8 × 1010 neurons, this number is dwarfed by its 1 × ...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
In this poster, we present a top-down methodology aimed at evaluating the scalability of Spiking Neu...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker (Spiking Neural Network Architecture) is a specialized computing engine, intended for real...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...