most citedGreenFaaS: Maximizing Energy Efficiency of HPC Workloads with FaaS

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cs.DC20251 cited

Addressing Reproducibility Challenges in HPC with Continuous Integration

Valérie Hayot-Sasson, Nathaniel Hudson, André Bauer +3

The high-performance computing (HPC) community has adopted incentive structures to motivate reproducible research, with major conferences awarding badges to papers that meet reprod…

cs.DC2025

Core Hours and Carbon Credits: Incentivizing Sustainability in HPC

Alok Kamatar, Maxime Gonthier, Valerie Hayot-Sasson +6

Realizing a shared responsibility between providers and consumers is critical to manage the sustainability of HPC. However, while cost may motivate efficiency improvements by infra…

cs.DC20241 cited

Octopus: Experiences with a Hybrid Event-Driven Architecture for Distributed Scientific Computing

Haochen Pan, Ryan Chard, Sicheng Zhou +7

Scientific research increasingly relies on distributed computational resources, storage systems, networks, and instruments, ranging from HPC and cloud systems to edge devices. Even…

cs.DC2024

Object Proxy Patterns for Accelerating Distributed Applications

J. Gregory Pauloski, Valerie Hayot-Sasson, Logan Ward +4

Workflow and serverless frameworks have empowered new approaches to distributed application design by abstracting compute resources. However, their typically limited or one-size-fi…

cs.DC20241 cited

GreenFaaS: Maximizing Energy Efficiency of HPC Workloads with FaaS

Alok Kamatar, Valerie Hayot-Sasson, Yadu Babuji +6

Application energy efficiency can be improved by executing each application component on the compute element that consumes the least energy while also satisfying time constraints.…