DOE OSTI · 3013979
Frontier Job-Centric Telemetry Dataset
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Abstract
Comprehensive analysis of high-performance computing (HPC) systems requires linking workload execution to system behavior. This kind of analysis is vital for diagnosing performance issues, managing capacity, detecting anomalous workloads, and understanding how applications interact with system hardware. This job-centric telemetry dataset unifies scheduler job records with node-level measurements, enabling direct association between workloads and their corresponding power, thermal, and performance characteristics. It contains sanitized, scheduler related metadata for 152,400 individual jobs that ran on the Frontier supercomputer and ended on selected days throughout 2024 and 2025, a subpopulation of ~6.8% of the total number of allocated jobs with non-zero run time on the system over that same period. Each is linked with files that contain telemetry time series records of the power utilization and temperature behavior of its allocated nodes and their processors during the run time of the job. Where available, a portion of the job files also contain network performance time series. Jobs are sampled from select days that reflect normal levels of user activity and possess job size distributions with large numbers of leadership class jobs (>20% of Frontier nodes). Jobs in this dataset attempt to best represent successful user workflows.
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Huk, Leah [Oak Ridge National Laboratory] (ORCID:0000000215307297), Palumbo, Rachel [Oak Ridge National Laboratory] (ORCID:0000000150343077), Adamson, Ryan [Oak Ridge National Laboratory] (ORCID:0000000301495810), Osborne, Tim [Oak Ridge National Laboratory] (ORCID:0000000301495810), Lester, Corwin [Oak Ridge National Laboratory] (ORCID:0000000162113316). 2026-09-02. Frontier Job-Centric Telemetry Dataset. https://doi.org/10.13139/olcf/3013979
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