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arXiv research

A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.

169,341 papers · 148 categories

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84168251335 · Jun 202019922001200920182026
48 results for sure screening property

We propose {graphical sure screening}, or GRASS, a very simple and computationally-efficient screening procedure for recovering the structure of a Gaussian graphical model in the high-dimensional setting. The GRASS estimate of the conditional dependence graph is obtained by thresholding the elements of the sample covar…

2014-07-29abs ↗pdf ↗

A new screening method for high-dimensional data reduces computational cost.

problem Challenges in variable selection for ultrahigh-dimensional linear regression.
method Ordering absolute sample ridge partial correlations to screen variables.
result The method provides sure screening property without strong assumptions.

A new method reduces feature screening cost from O(np)O(np) to O(np)O(\sqrt{n}p).

problem Eliminating non-informative features in ultrahigh-dimensional datasets.
method Adaptive subsampling method based on multi-armed bandit problem.
result The proposed method retains sure screening property and comparable performance to SIS.

A new feature screening method using projection correlation and knockoffs controls FDR in high-dimensional data.

problem Feature selection in ultra-high dimensional datasets with heavy-tailed errors and multivariate responses.
method Projection correlation for dependence measurement, knockoffs for FDR control, two-step approach.
result The method controls FDR and ensures sure screening under weak assumptions.

IPDC method identifies interactions in high-dimensional multi-response models efficiently.

problem Identifying important interactions in high-dimensional multi-response models.
method Two-stage method using distance correlation for feature screening followed by feature selection.
result IPDC method is computationally efficient and effective even with diverging number of responses.

Variable selection in high-dimensional space characterizes many contemporary problems in scientific discovery and decision making. Many frequently-used techniques are based on independence screening; examples include correlation ranking (Fan and Lv, 2008) or feature selection using a two-sample t-test in high-dimension…

2008-12-17abs ↗pdf ↗

AJL framework detects dynamic patterns in high-dimensional time-varying models.

problem Complex time-varying associations and abrupt regime shifts in longitudinal processes.
method Hierarchical regularization framework integrating functional variable selection with structural changepoint detection.
result The refined estimator achieves the oracle property in ultra-high-dimensional settings.

Extends variable screening for ultrahigh-dimensional models, reducing dimensionality to sample size.

problem Statistical inference challenges in ultrahigh-dimensional linear models.
method Extends correlation-based variable screening to arbitrary linear models and post-screening inference techniques.
result Shows a condition (screening condition) sufficient for successful variable screening in arbitrary linear models.

A fast MCMC sampler for sparse Bayesian inference.

problem Sparse Bayesian inference problems with high computational cost.
method Asynchronous Gibbs sampler extended with data sub-sampling.
result The Markov chain admits an invariant distribution that recovers the main signal with high probability.

DC-SIS selects features faster than mRMR for Parkinson's vocal diagnosis.

problem Feature selection for Parkinson's disease vocal data.
method DC-SIS (Distance Correlation Sure Independence Screening) using distance correlation measure.
result 90 times faster feature selection with similar accuracy.

Proposes a model for classifying high-dimensional time series with interpretable parameters.

problem Challenges in classifying high-dimensional time series, especially in neuroscience.
method Model-based approach using sparsity in inverse spectral density matrices, with interpretability of model parameters.
result Model demonstrates consistency and sure screening property, enabling nuanced inferences.

Study on umbilical submanifolds in specific geometric spaces.

problem Characterizing curvature properties of umbilical submanifolds.
method Analyzing totally and screen totally umbilical half lightlike submanifolds in almost contact B-metric manifolds.
result Curvature properties of these submanifolds were studied and characterized.

C-SURE improves complex-valued deep learning models by shrinking estimates, outperforming MLE and SurReal.

problem Improving accuracy and robustness of complex-valued deep learning models.
method Proposes a Stein's unbiased risk estimate (SURE) for complex-valued data and integrates it into a prototype CNN classifier.
result C-SURE outperforms SurReal and MLE in accuracy and robustness on complex-valued datasets.

We introduce the notion of a stationary random manifold and develop the basic entropy theory for it. Examples include manifolds admitting a compact quotient under isometries and generic leaves of a compact foliation. We prove that the entropy of an ergodic stationary random manifold is zero if and only if the manifold …

2014-08-15abs ↗pdf ↗

The study improves compound selection in in silico screening by focusing on model's ability to predict desirable outcomes.

problem Improving compound selection in in silico screening to reduce errors and enhance generalization.
method Extending learning theory, the study analyzes the impact of selection policies on generalization and proposes a method to mitigate challenges.
result Generalization can be enhanced by considering a model's ability to predict the fraction of desired outcomes in a batch.

New neural network models predict molecular properties without 3D geometry, speeding up high-throughput screening.

problem Predicting molecular properties for large, complex molecules without computationally expensive 3D geometry.
method Message-passing neural networks trained with and without 3D structural information.
result Message-passing neural networks achieve similar accuracy to state-of-the-art methods without 3D geometry.

Simplified screening tests for data points in optimization.

problem Discarding irrelevant data points in empirical risk minimization.
method Designing loss functions and regularizing convex losses to induce sparsity, using ellipsoidal approximations.
result Automatic discarding of data samples without losing optimization guarantees.

To find efficient screening methods for high dimensional linear regression models, this paper studies the relationship between model fitting and screening performance. Under a sparsity assumption, we show that a subset that includes the true submodel always yields smaller residual sum of squares (i.e., has better model…

2012-12-04abs ↗pdf ↗

The paper studies lightlike submanifolds in bronze semi-Riemannian manifolds with specific geometric properties.

problem Characterizing and understanding lightlike submanifolds in bronze semi-Riemannian manifolds.
method Characterization theorems on geodesicity, integrability, and parallelism of distributions.
result No coisotropic, isotropic, or totally proper screen generic lightlike submanifolds exist.

We study Weyl structures on lightlikes hypersurfaces endowed with a conformal structure of certain type and specific screen distribution: the Weyl screen structures. We investigate various differential geometric properties of Einstein-Weyl screen structures on lightlike hypersurfaces and show that, for ambiant Lorentzi…

2007-04-25abs ↗pdf ↗

Develops a new essential supremum concept for financial models.

problem Uncertainty in financial models with non-dominated, non-compact probability measures.
method Introduces quasi-sure essential supremum for real-valued functions and proves its properties.
result Bi-dual characterization of super-hedging cost and new results on aggregation of quasi-sure statements.

We study two global structural properties of a graph ΓΓ, denoted AS and CFS, which arise in a natural way from geometric group theory. We study these properties in the Erdös--Rényi random graph model G(n,p), proving a sharp threshold for a random graph to have the AS property asymptotically almost surely, and giving f…

2015-05-08abs ↗pdf ↗

Study on lightlike hypersurfaces in metallic semi-Riemannian manifolds.

problem Exploring geometric properties of lightlike hypersurfaces in metallic semi-Riemannian manifolds.
method Investigation of invariant and screen semi-invariant lightlike hypersurfaces, examination of integrability conditions.
result Induced structure on invariant lightlike hypersurfaces is metallic.

FlowMO uses Gaussian Processes for molecular property prediction with uncertainty.

problem Predicting molecular properties with uncertainty for small datasets.
method Gaussian Processes implemented in FlowMO, built on GPflow and RDKit.
result Comparable predictive performance to deep learning but superior uncertainty calibration.

First-passage percolation affects graph properties like curvature and geodesics.

problem Effect of first-passage percolation on graph curvature and geodesics.
method Randomly perturbs the metric of a graph by assigning random edge lengths.
result Non-positive curvature and geodesic properties are not preserved by first-passage percolation.

Decision stumps accurately screen variables in nonparametric models.

problem Challenges in theoretical properties of tree-based variable importance measures.
method Derive performance guarantees for variable selection using a single-level CART decision tree (decision stump).
result Decision stumps can perform consistent model selection despite being inaccurate for estimation.

Paper introduces a method to predict molecule properties from diverse data sources.

problem Limited ability to accommodate scarce or fragmented training data.
method Adaptive Invariance using invariant risk minimization to generalize beyond heterogeneous data.
result Predictor outperforms state-of-the-art transfer learning methods by significant margin.