Publication | Open Access
FOSquare: A Novel Optical HPC Interconnect Network Architecture Based on Fast Optical Switches with Distributed Optical Flow Control
13
Citations
17
References
2021
Year
Cluster ComputingFlow ControlEngineeringFast Optical SwitchesHigh Performance Computer NetworkComputer ArchitectureInterconnection Network ArchitectureData Center NetworkOptical NetworksSystems EngineeringOptical SwitchingParallel ComputingOptical NetworkingFree-space Optical NetworkPhotonicsComputer EngineeringPassive Optical NetworkInterconnection NetworkHigh-speed NetworkingEdge ComputingCloud ComputingHpc InfrastructureParallel Programming
Interconnecting networks adopting Fast Optical Switches (FOS) can achieve high bandwidth, low latency, and low power consumption. We propose and demonstrate a novel interconnecting topology based on FOS (FOSquare) with distributed fast flow control which is suitable for HPC infrastructures. We also present an Optimized Mapping (OPM) algorithm that maps the most communication-related processes inside a rack. We numerically investigate and compare the network performance of FOSquare with Leaf-Spine under real traffic traces collected by running multiple applications (CG, MG, MILC, and MINI_MD) in an HPC infrastructure. The numerical results show that the FOSquare can reduce >10% latency with respect to Leaf-Spine under the scenario of 16 available cores.
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