- By:
- Grant, Joshua N; MacFarland, Marguerite J; Watson, Cory L; Christopher, Steven C; Wells, David
- Page Number:
- 1-6
- Book Title:
- 2026 5th International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)
- Publication Date:
- August 31, 2026
- Conference Name:
- 2026 5th International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)
- Conference Location:
- Santiago de Chile, Chile
- Conference Sponsor:
- IEEE
- View DOI Listing:
- https://doi.org/10.1109/SGSMA65955.2026.11618879
Abstract
Today's power grid operators are implementing timing and synchronization solutions that provide resilience to Global Navigation Satellite System (GNSS) vulnerabilities. These vendor-specific solutions often come with additional software applications that are designed to monitor that vendor's synchronization performance data. However, resilient timing architectures often resulting in multi-vendor solutions, including approaches that blend terrestrial clocks with space-based subscription services. In such an environment, collecting, analyzing, and visualizing data from a variety of sources within a single platform was heretofore not possible. To address this need, the US Department of Energy's Center for Alternative Synchronization and Timing (CAST) developed OpenSAMPL, the Open Synchronized Analytics and Monitoring Platform, an open-source Python framework for processing, loading, and observing clock measurement data from distributed devices. OpenSAMPL enables the ingestion of diverse clock-probe sources into a scalable time-series database and applies robust analytics. OpenSAMPL currently supports two vendor data pipelines, and will be extended to more in the near future, enabling seamless monitoring of a variety of timing and synchronization devices in a common environment.