Broadband Ground Motion Synthesis via Generative Adversarial Neural Operators: Development and Validation
Yaozhong Shi, Grigorios Lavrentiadis, Domniki Asimaki, Zachary E., Ross, Kamyar Azizzadenesheli

TL;DR
This paper introduces a novel data-driven framework using Generative Adversarial Neural Operators to synthesize broadband ground motions conditioned on key seismic parameters, demonstrating promising results across different datasets.
Contribution
The paper develops and validates a new GANO-based method for broadband ground-motion synthesis that is resolution invariant and conditioned on multiple seismic parameters, advancing previous models.
Findings
GANO can learn magnitude, distance, and V_{S30} scaling of ground motions.
The model captures effective amplitude spectra and pseudo-spectral accelerations well.
Discrepancies are due to dataset limitations and data scarcity in certain conditions.
Abstract
We present a data-driven framework for ground-motion synthesis that generates three-component acceleration time histories conditioned on moment magnitude, rupture distance , time-average shear-wave velocity at the top (), and style of faulting. We use a Generative Adversarial Neural Operator (GANO), a resolution invariant architecture that guarantees model training independent of the data sampling frequency. We first present the conditional ground-motion synthesis algorithm (cGM-GANO) and discuss its advantages compared to previous work. We next train cGM-GANO on simulated ground motions generated by the Southern California Earthquake Center Broadband Platform (BBP) and on recorded KiK-net data and show that the model can learn the overall magnitude, distance, and scaling of effective amplitude spectra (EAS) ordinates and pseudo-spectral accelerations (PSA).…
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Taxonomy
TopicsSeismic Performance and Analysis · Seismic Waves and Analysis · Structural Health Monitoring Techniques
