Adding a vaguely specified Bayesian component to a BiGRU-Transformer raises reported fake news test accuracy from 99.67% to 99.73% on one Kaggle dataset, with no code, data, or error bars.
Simultaneously detecting spatiotemporal changes with penalized Poisson regression models
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abstract
In the realm of large-scale spatiotemporal data, abrupt changes are commonly occurring across both spatial and temporal domains. This study aims to address the concurrent challenges of detecting change points and identifying spatial clusters within spatiotemporal count data. We introduce an innovative method based on the Poisson regression model, employing doubly fused penalization to unveil the underlying spatiotemporal change patterns. To efficiently estimate the model, we present an iterative shrinkage and threshold based algorithm to minimize the doubly penalized likelihood function. We establish the statistical consistency properties of the proposed estimator, confirming its reliability and accuracy. Furthermore, we conduct extensive numerical experiments to validate our theoretical findings, thereby highlighting the superior performance of our method when compared to existing competitive approaches.
fields
cs.CL 1years
2025 1verdicts
REJECT 1representative citing papers
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A Hybrid Transformer Model for Fake News Detection: Leveraging Bayesian Optimization and Bidirectional Recurrent Unit
Adding a vaguely specified Bayesian component to a BiGRU-Transformer raises reported fake news test accuracy from 99.67% to 99.73% on one Kaggle dataset, with no code, data, or error bars.