DOE OSTI · 3378199
Protection System Validation Using Post-Event Anomaly Classification with Machine Learning
Abstract
Power system protection devices have transitioned over the past few decades from mechanical to analog devices, then to solid state and finally digital. Relays and their associated critical network of equipment have significantly increased in complexity. Even internally, relays have gained significant intricacy, with relatively simple overcurrent or differential functions now being assisted by a myriad of other functions. This is necessary as the grid becomes more complex, but it brings increased difficulty in monitoring and upkeep. Misoperation caused by improper relay settings or malicious actions is a constant challenge faced by all utilities. These improper settings can be difficult to identify and may require exhaustive post-mortem analysis, typically after a major outage event has already occurred. A mechanism is needed for monitoring the behavior of protection systems to validate that they act and perform as expected. This work presents a concept for a machine learning (ML) system capable of validating the performance of protection systems by classifying anomalous events and characterizing protection system responses based solely on available current and voltage measurements. As a first step in its development, an experimental dataset is generated, and a random forest model is implemented with high accuracy in distinguishing four power system scenarios.
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Coslett, Faith Kimberley [Idaho National Laboratory] (ORCID:0000000184871695), Tacke, Jonathan M. [Idaho National Laboratory] (ORCID:0000000237285105), Avery, Becca [Idaho National Laboratory] (ORCID:0009000189822400), Cooley, Easton Brandon [Idaho National Laboratory] (ORCID:0009000738301377). 2026-07-14. Protection System Validation Using Post-Event Anomaly Classification with Machine Learning. https://www.osti.gov/biblio/3378199
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