Exascale performance will be delivered by systems composed of millions of interconnected computing cores. The way these computing elements are connected with each other (network topology) has a strong impact on many performance characteristics. In this work we propose a multi-objective optimization- based framework to explore possible network topologies to be implemented in the EU-funded ExaNeSt project. The modular design of this system’s interconnect provides great flexibility to design topologies optimized for specific performance targets such as communications locality, fault tolerance or energy- consumption. The generation procedure of the topologies is formulated as a three-objective optimization problem (minimizing some topological c...
The ExaNeSt project started on December 2015 and is funded by EU H2020 research framework (call H202...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...
Exascale performance will be delivered by systems composed of millions of interconnected computing c...
Exascale performance will be delivered by systems composed of millions of interconnected computing c...
Exascale performance will be delivered by systems composed of millions of inter-connected computing ...
Exascale performance will be delivered by systems composed of millions of inter-connected computing ...
Interconnection networks are one of the main limiting factors when it comes to scale out computing s...
To realize the full potential of a high-performance computing system with a reconfigurable interconn...
To realize the full potential of a high-performance computing system with a reconfigurable interconn...
The advent of new technologies brings revolutions in the fields of VLSI design and high performance ...
The deployment of the next generation computing platform at ExaFlops scale requires to solve new tec...
This article provides background information about interconnection networks, an analysis of previous...
This article provides background information about interconnection networks, an analysis of previous...
The ExaNeSt project started on December 2015 and is funded by EU H2020 research framework (call H202...
The ExaNeSt project started on December 2015 and is funded by EU H2020 research framework (call H202...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...
Exascale performance will be delivered by systems composed of millions of interconnected computing c...
Exascale performance will be delivered by systems composed of millions of interconnected computing c...
Exascale performance will be delivered by systems composed of millions of inter-connected computing ...
Exascale performance will be delivered by systems composed of millions of inter-connected computing ...
Interconnection networks are one of the main limiting factors when it comes to scale out computing s...
To realize the full potential of a high-performance computing system with a reconfigurable interconn...
To realize the full potential of a high-performance computing system with a reconfigurable interconn...
The advent of new technologies brings revolutions in the fields of VLSI design and high performance ...
The deployment of the next generation computing platform at ExaFlops scale requires to solve new tec...
This article provides background information about interconnection networks, an analysis of previous...
This article provides background information about interconnection networks, an analysis of previous...
The ExaNeSt project started on December 2015 and is funded by EU H2020 research framework (call H202...
The ExaNeSt project started on December 2015 and is funded by EU H2020 research framework (call H202...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...
International audienceMulti-scale Topology Optimization (a.k.a. Micro-structural Topology Optimizati...