arXiv · 2406.01923
Development of Bayesian Component Failure Models in E1 HEMP Grid Analysis
Abstract
Combined electric power system and High-Altitude Electromagnetic Pulse (HEMP) models are being developed to determine the effect of a HEMP on the US power grid. The work relies primarily on deterministic methods; however, it is computationally untenable to evaluate the E1 HEMP response of large numbers of grid components distributed across a large interconnection. Further, the deterministic assessment of these components' failures are largely unachievable. E1 HEMP laboratory testing of the components is accomplished, but is expensive, leaving few data points to construct failure models of grid components exposed to E1 HEMP. The use of Bayesian priors, developed using the subject matter expertise, combined with the minimal test data in a Bayesian inference process, provides the basis for the development of more robust and cost-effective statistical component failure models. These can be used with minimal computational burden in a simulation environment such as sampling of Cumulative Distribution Functions (CDFs).
Explore related subjects
Keep this discovery
Niladri Das, Ross Guttromson, Tommie A. Catanach. 2024-06-04. Development of Bayesian Component Failure Models in E1 HEMP Grid Analysis. https://arxiv.org/abs/2406.01923
Cite the original work for its findings. Save a collection to share your selection of sources.