AbstractSpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion spiking neurons in real-time. A full-fledged implementation of a SpiNNaker system will comprise more than 105 integrated circuits (half of which are SDRAMs and half multi-core systems-on-chip). Given this scale, it is unavoidable that some components fail and, in consequence, fault-tolerance is a foundation of the system design. Although the target application can tolerate a certain, low level of failures, important efforts have been devoted to incorporate different techniques for fault tolerance. This paper is devoted to discussing how hardware and software mechanisms collaborate to make SpiNNaker operate properly even in the very lik...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
The fault-tolerance of analog parallel distributed implementations of a multivariable aircraft neuro...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
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...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
Artificial Intelligence (AI) and machine learning algorithms are taking up the lion's share of the t...
Abstract — SpiNNaker is a massively-parallel neuromorphic computing architecture designed to model v...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
The fault-tolerance of analog parallel distributed implementations of a multivariable aircraft neuro...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...
SpiNNaker is a biologically-inspired massively-parallel computer designed to model up to a billion s...
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...
SpiNNaker (a contraction of Spiking Neural Network Architecture) is a million-core computing engine ...
Moore’s law scaling has slowed dramatically since the turn of the millennium, causing new generation...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
The SpiNNaker project aims to develop parallel computer systems with more than a million embedded pr...
SpiNNaker is a massively parallel distributed architecture primarily focused on real time simulation...
The modelling of large systems of spiking neurons is computationally very demanding in terms of proc...
Artificial Intelligence (AI) and machine learning algorithms are taking up the lion's share of the t...
Abstract — SpiNNaker is a massively-parallel neuromorphic computing architecture designed to model v...
Fault tolerance is a remarkable feature of biological systems and their self-repair capability influ...
Abstract — A novel approach is proposed to the problem of managing a very large scale computer syste...
The fault-tolerance of analog parallel distributed implementations of a multivariable aircraft neuro...
Abstract—The modelling of large systems of spiking neurons is computationally very demanding in term...