Publication | Closed Access
Towards Improved Power Management in Cloud GPUs
19
Citations
5
References
2023
Year
Cluster ComputingEngineeringEnergy EfficiencyModern Server GpusComputer ArchitectureCloud GpusData ScienceParallel ComputingModern GpusPower-aware SoftwarePower ManagementPower-aware ComputingComputer EngineeringComputer ScienceGpu ClusterPower ConsumptionSmart GridEnergy ManagementEdge ComputingCloud ComputingPower-efficient ComputingGpu Virtualization
As modern server GPUs are increasingly power intensive, better power management mechanisms can significantly reduce the power consumption, capital costs, and carbon emissions in large cloud datacenters. This letter uses diverse datacenter workloads to study the power management capabilities of modern GPUs. We find that current GPU management mechanisms have limited compatibility and monitoring support under cloud virtualization. They have sub-optimal, imprecise, and non-intuitive implementations of Dynamic Voltage and Frequency Scaling (DVFS) and power capping. Consequently, efficient GPU power management is not widely deployed in clouds today. To address these issues, we make actionable recommendations for GPU vendors and researchers.
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