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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.

169,051 papers · 148 categories

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86173259345 · Jun 202019922001200920182026
48 results for Random Perturbation

New research evaluates various perturbation methods for improving neural network robustness.

problem Understanding and improving robustness of Convolutional Neural Networks (CNNs) against adversarial attacks.
method Detailed evaluation of five main perturbation-based defenses, comparing random and deterministic approaches.
result Perturbation-based defenses are equivalent in efficacy, and attacks transfer between them.

This work improves structured prediction by learning the balance between signal and random noise.

problem Structured prediction with random perturbations.
method Learning the variance of randomized structured predictors to balance signal and noise.
result Learning the balance improves structured prediction effectiveness.

EVILL uses randomised perturbations to improve exploration in bandit problems.

problem Improving exploration in structured stochastic bandit problems.
method Solves for the minimiser of a linearly perturbed regularised negative log-likelihood function.
result EVILL matches the performance of Thompson-sampling-style methods in theory and practice.

Study analyzes perturbations in singular subspaces under random noise.

problem Understanding singular vector and subspace changes in signal-plus-noise models.
method Generalized Davis-Kahan-Wedin theorem for any unitarily invariant norm, considering \ell_\infty and 2,\ell_{2,\infty} bounds.
result Fine-grained insights into singular vector and subspace perturbations, including \ell_\infty and 2,\ell_{2,\infty} bounds.

Improved perturbation reduces matrix condition number to O(n) with minimal storage.

problem Reducing the condition number of deterministic matrices for efficient algorithmic use.
method Introduced pattern matrices and sparse perturbations with dependent entries.
result Condition number reduced to O(n) with O(n) random numbers in O(log n) precision.

We introduce an efficient message passing scheme for solving Constraint Satisfaction Problems (CSPs), which uses stochastic perturbation of Belief Propagation (BP) and Survey Propagation (SP) messages to bypass decimation and directly produce a single satisfying assignment. Our first CSP solver, called Perturbed Blief …

2014-01-26abs ↗pdf ↗

Most random ReLU networks are vulnerable to small, Euclidean adversarial perturbations.

problem Vulnerability of ReLU networks to adversarial attacks.
method Analysis of random ReLU networks with decreasing dimensions, using gradient flow and descent.
result Most examples can be perturbed by small Euclidean distances via gradient methods.

The paper introduces a method to improve adversarial robustness in neural networks using randomized perturbations.

problem Deep neural networks are sensitive to small perturbations on correctly classified examples, leading to erroneous predictions.
method The approach uses randomized perturbations to optimize the worst case loss function over all possible substitutions of training examples, ensuring that substitution likelihood is weighted by the proximity to the original word.
result The method achieves performance gains and differentially-private model training, improving robustness against adversarial attacks.

Introduces RPU to explain randomization preference in dynamic settings.

problem Explains preference for randomization in dynamic investment problems.
method Introduces recursive perturbed utility (RPU) to incorporate randomization preference.
result Proves RPU-optimal portfolio policy is Gaussian and can be expressed in closed form.

A new exploration strategy for contextual bandits reduces regret and is computationally efficient.

problem Improving exploration in contextual bandits to reduce regret.
method Feature perturbation, injecting randomness directly into feature inputs.
result Achieves ildeO(dT) ilde{\mathcal{O}}(d\sqrt{T}) worst-case regret bound, surpassing existing methods.

Extends randomized smoothing to certify robustness against various threat models and adversarial perturbations.

problem Certifying robustness of classifiers against adversarial perturbations.
method Develops a method to certify robustness against any p\ell_p (pN>0p\in\mathbb{N}_{>0}) minimized adversarial perturbation.
result Randomized smoothing suffers from the curse of dimensionality, reducing effective radius as pp increases.

Two randomized algorithms improve performance in non-stationary linear bandits.

problem Conservatism in optimistic algorithms for non-stationary linear bandits.
method Two perturbation approaches: randomization and random perturbations.
result D-RandLinUCB and D-LinTS achieve optimal dynamic regret and are oracle-efficient.

New framework improves adversarial robustness certification for various perturbations.

problem Certifying robustness against adversarial attacks in deep learning models.
method Unified functional optimization approach with non-Gaussian smoothing noise for multiple types of attacks.
result Achieves better certification results and identifies key trade-offs between accuracy and robustness.

Work on making classifiers robust against adversarial attacks for top-k predictions.

problem Vulnerability of classifiers to adversarial perturbations, especially for top-k predictions.
method Randomized smoothing to turn any classifier into a robust one, using Gaussian noise.
result Derives a tight robustness in ℓ2 norm for top-k predictions, achieving 62.8% certified top-5 accuracy on ImageNet.

Study on function sensitivity in random DNNs using large deviation theory.

problem Understanding function sensitivity in finite-size deep neural networks.
method Large deviation theory and path integral analysis applied to random DNNs with ReLU and sign activations.
result Random DNNs with ReLU activations are more robust to parameter perturbations.

DIP-FAT improves adversarial training by diversifying perturbations.

problem Adversarial examples fool deep neural networks, leading to overfitting and poor performance.
method DIP-FAT uses random directions to diversify perturbations in adversarial training.
result DIP-FAT reduces overfitting and improves clean data accuracy.

Study efficient learning of robust halfspaces with noise.

problem Learning robust halfspaces in the presence of adversarial perturbations and random label noise.
method Provides conditions for robust learnability and a simple algorithm for any ℓ_p perturbation.
result Simple computationally efficient algorithm for robust learning with random label noise.

Gaussian copulas are widely used in the industry to correlate two random variables when there is no prior knowledge about the co-dependence between them. The perturbed Gaussian copula approach allows introducing the skew information of both random variables into the co-dependence structure. The analytical expression of…

2010-02-27abs ↗pdf ↗

LMC improves sampling from complex distributions using quasi-random sequences.

problem Sampling from complex high-dimensional distributions with high accuracy.
method Using completely uniformly distributed (CUD) sequences in Langevin Monte Carlo (LMC) to generate Gaussian perturbations.
result LMC with low-discrepancy CUD sequences achieves smaller estimation error than standard LMC.

Paper shows robustness of gradient descent in matrix sensing despite perturbations.

problem Understanding robustness of gradient descent in matrix sensing.
method Developed perturbed gradient flow to capture noise and improve robustness.
result Gradient descent is robust to perturbations in matrix sensing.

The paper analyzes how random perturbations affect RSVD and its applications.

problem Analyzing the impact of random perturbations on RSVD.
method Derives bounds for distances between exact and approximated singular vectors using RSVD.
result Established nearly-optimal convergence rates and asymptotic normality for RSVD in various inference problems.

Simple classifiers can't be robust to adversarial perturbations, but more complex ones can.

problem The gap between standard accuracy and robustness to adversarial attacks.
method Theoretical examples and quantitative analysis of classification tasks.
result There is a trade-off between robustness and standard accuracy among simple classifiers.

New classifier robust to adversarial perturbations from high-accuracy models.

problem Adversarial attacks on high-accuracy machine learning models.
method Randomized smoothing framework with random partitions and doubling dimension.
result Constructs a robust classifier with high accuracy and bounded adversarial error.

The paper addresses uncertainties in spectral clustering of corrupted data.

problem Uncertainties in spectral clustering due to measurement errors and missing data.
method Mathematical framework based on random set theory for Monte Carlo approximation of expected clusterings.
result Consistent quantities of interest for evaluating clusterings in corrupted data.

Paper proposes a method to generate adversarial perturbations for black-box attacks without accessing inner states.

problem Generating adversarial perturbations for black-box attacks without accessing inner states of a DNN.
method Matrix-free generation method that requires fewer query trials.
result The proposed method successfully deceives a DNN for semantic segmentation more effectively than random noise.

We first analyze the integrated density of states (IDS) of periodic Schrödinger operators on an amenable covering manifold. A criterion for the continuity of the IDS at a prescribed energy is given along with examples of operators with both continuous and discontinuous IDS'. Subsequently, alloy-type perturbations of th…

2007-05-08abs ↗pdf ↗

Improved online Lasso reduces regret in sparse linear contextual bandits.

problem Sparse linear contextual bandit problem with inefficient sampling.
method Perturbed adversary approach to alleviate sampling inefficiency.
result Online Lasso achieves O(kTlogd)\mathcal{O}(\sqrt{kT\log d}) regret bound.

Classical matrix perturbation results, such as Weyl's theorem for eigenvalues and the Davis-Kahan theorem for eigenvectors, are general purpose. These classical bounds are tight in the worst case, but in many settings sub-optimal in the typical case. In this paper, we present perturbation bounds which consider the natu…

2017-06-20abs ↗pdf ↗

Paper defends deep learning classifiers against channel-aware adversarial attacks.

problem Deep learning classifiers are vulnerable to adversarial attacks.
method Channel-aware adversarial attacks are presented and defended against.
result Certified defense based on randomized smoothing makes classifiers robust.

Residual networks analyzed using linearization for stability under perturbations.

problem Understanding the behavior of residual networks under small input perturbations.
method Linearization of residual units and network stages, using singular value decomposition for stability analysis.
result Most singular values of residual units are 1, but scaling and weights significantly affect them.