The SpiNNaker project aims to develop parallel computer systems with more than a million embedded processors. The goal of the project is to support largescale simulations of systems of spiking neurons in biological real time, an application that is highly parallel but also places very high loads on the communication infrastructure due to the very high connectivity of biological neurons. The scale of the machine requires fault-tolerance and power-efficiency to influence the design throughout, and the development has resulted in innovation at every level of design, including a self-timed inter-chip communication system that is resistant to glitch-induced deadlock and ‘emergency’ hardware packet re-routing around failed inter-chip links, throu...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
The design of a new high-performance computing platform to model biological neural networks requires...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
AbstractSpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a b...
Abstract—SpiNNaker is a novel chip – based on the ARM processor – which is designed to support large...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
SpiNNaker (Spiking Neural Network architecture) is a massively parallel computing machine, comprisin...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
The design of a new high-performance computing platform to model biological neural networks requires...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
AbstractSpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a b...
Abstract—SpiNNaker is a novel chip – based on the ARM processor – which is designed to support large...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
SpiNNaker (Spiking Neural Network architecture) is a massively parallel computing machine, comprisin...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
[Abstract] Background: The human brain is the most complex system in the known universe, it is there...