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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.

169,181 papers · 148 categories

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48 results for noise dictionaries

Lasso-Zero improves support recovery in high-dimensional linear models.

problem Support recovery in high-dimensional linear models with sparse β0β^0.
method Lasso-Zero uses an 'overfit, then threshold' approach with noise dictionaries.
result Lasso-Zero outperforms competitors in support recovery and trade-off between true positives and false discoveries.

A popular approach within the signal processing and machine learning communities consists in modelling signals as sparse linear combinations of atoms selected from a learned dictionary. While this paradigm has led to numerous empirical successes in various fields ranging from image to audio processing, there have only …

2014-07-19abs ↗pdf ↗

Paper provides conditions for local recovery of tensor data's Kronecker-structured dictionaries.

problem Local recovery of Kronecker-structured dictionaries for tensor data.
method Derives sufficient conditions for local recovery of coordinate dictionaries.
result Sufficient conditions guarantee recovery of individual coordinate dictionaries up to specified error.

We propose a new algorithm to learn a dictionary for reconstructing and sparsely encoding signals from measurements without phase. Specifically, we consider the task of estimating a two-dimensional image from squared-magnitude measurements of a complex-valued linear transformation of the original image. Several recent …

2016-02-06abs ↗pdf ↗

Dictionary learning is the problem of estimating the collection of atomic elements that provide a sparse representation of measured/collected signals or data. This paper finds fundamental limits on the sample complexity of estimating dictionaries for tensor data by proving a lower bound on the minimax risk. This lower …

2016-05-17abs ↗pdf ↗

CRsAE auto-encoder recovers convolutional dictionary from noisy signals.

problem Recovering a convolutional dictionary from noisy signals.
method Constrained recurrent sparse auto-encoder (CRsAE) architecture.
result CRsAE successfully recovers the underlying dictionary in the presence of noise.

In this paper, we present new results on using orthogonal matching pursuit (OMP), to solve the sparse approximation problem over redundant dictionaries for complex cases (i.e., complex measurement vector, complex dictionary and complex additive white Gaussian noise (CAWGN)). A sufficient condition that OMP can recover …

2012-06-11abs ↗pdf ↗

Paper presents J-RFDL for robust DL in compressed space, improving data representation robustness and accuracy.

problem Improving data representation robustness and accuracy in the presence of noise and outliers.
method Joint Robust Factorization and Projective Dictionary Learning (J-RFDL) in a factorized compressed space.
result Delivers superior performance in data representation and classification over state-of-the-art methods.

The paper proposes a new method for dictionary learning using p\ell_p-norm maximization.

problem Complete dictionary learning problem in signal processing and data analytics.
method The paper investigates p\ell_p-norm maximization approaches for complete dictionary learning, proving global maximizers are close to the true dictionary and developing an efficient algorithm based on the generalized power method.
result The p\ell_p-based approaches are more efficient and robust than conventional methods, with p=3p=3 performing best.

Paper presents a method for robust surface reconstruction from noisy gradients using adaptive dictionary learning.

problem Reconstructing surfaces from noisy photometric stereo normal vector maps.
method Adaptive dictionary learning to sparsely represent spatial patches of the surface, enforcing smoothness constraints.
result The method effectively learns the underlying surface structure and is robust to noise.

DDL technique improves accuracy of deep neural networks against adversarial perturbations.

problem Improving accuracy of deep neural networks in the presence of adversarial perturbations.
method Denoising Dictionary Learning (DDL) technique applied to MNIST and CIFAR10 datasets.
result DDL significantly improves reconstruction quality and accuracy of deep neural networks on perturbed data.

UNHaP removes noise from physiological events using Hawkes processes.

problem Challenges in identifying true events from spurious ones in physiological signal analysis.
method UNHaP uses marked Hawkes processes to distinguish and unmix true events from noise.
result UNHaP significantly reduces false detection rates and enhances event understanding.

Estimates signals from a continuous dictionary with sparse mixtures using optimization.

problem Estimating signals from a continuous dictionary with unknown mixtures and noise.
method Formulates a regularized optimization problem with data fidelity and (1,Lp)(\ell_1,L^p)-penalty.
result High probability bounds on prediction error for the Group-Nonlinear-Lasso solution.

GPCDL uses Gaussian Processes to learn smooth templates from data.

problem Lack of smoothness in learned templates leads to overfitting and poor predictive performance.
method GPCDL incorporates Gaussian Process priors to enforce smoothness in the learned templates.
result GPCDL outperforms unregularized CDL in accuracy and predictive performance across various SNRs and applications.

CDPL-Net integrates CNN and DL for better image representation.

problem Improving image representation learning by combining CNN and DL.
method CDPL-Net architecture combining CNN and DPL layers, using l1-norm for sparse representation, and efficient stochastic gradient descent.
result Enhanced performance compared to state-of-the-art methods.

This paper presents the first theoretical results showing that stable identification of overcomplete μμ-coherent dictionaries ΦRd×KΦ\in \mathbb{R}^{d\times K} is locally possible from training signals with sparsity levels SS up to the order O(μ2)O(μ^{-2}) and signal to noise ratios up to O(d)O(\sqrt{d}). In particular the di…

2014-01-24abs ↗pdf ↗

In sparse recovery we are given a matrix AA (the dictionary) and a vector of the form AXA X where XX is sparse, and the goal is to recover XX. This is a central notion in signal processing, statistics and machine learning. But in applications such as sparse coding, edge detection, compression and super resolution, t…

2013-08-28abs ↗pdf ↗

The problem of Poisson denoising appears in various imaging applications, such as low-light photography, medical imaging and microscopy. In cases of high SNR, several transformations exist so as to convert the Poisson noise into an additive i.i.d. Gaussian noise, for which many effective algorithms are available. Howev…

2013-09-17abs ↗pdf ↗

This paper studies CSDL's reconstruction risk and finds it consistent in the ultra-sparse setting.

problem The statistical properties of convolutional sparse dictionary learning (CSDL).
method Identifies the minimax convergence rate of CSDL in terms of reconstruction risk, upper bounds the risk of an established CSDL estimator, and proves a matching lower bound.
result Consistency in reconstruction risk is possible precisely in the ultra-sparse setting.

Dictionary learning and component analysis are part of one of the most well-studied and active research fields, at the intersection of signal and image processing, computer vision, and statistical machine learning. In dictionary learning, the current methods of choice are arguably K-SVD and its variants, which learn a …

2017-03-22abs ↗pdf ↗

RKCA combines sparse dictionary learning and robust component analysis for robust low-rank modeling.

problem Learning robust low-rank representations from noisy data.
method Kronecker-decomposable component analysis (RKCA) with efficient learning algorithm.
result RKCA achieves robustness to gross corruption and low-rank modeling.

We consider the problem of learning a dictionary matrix from a number of observed signals, which are assumed to be generated via a linear model with a common underlying dictionary. In particular, we derive lower bounds on the minimum achievable worst case mean squared error (MSE), regardless of computational complexity…

2015-07-20abs ↗pdf ↗

DeepCAM learns convolutional dictionaries for image processing.

problem Processing high-dimensional signals like images efficiently.
method Introduces a Deep Convolutional Analysis Dictionary Model (DeepCAM) using convolutional dictionaries.
result DeepCAM achieves performance comparable to other methods on single image super-resolution.

Bayesian method improves dictionary learning for complex problems.

problem Efficiently identifying relevant dictionary entries for complex inverse problems.
method Bayesian group sparsity coding and deflation steps to compress and identify relevant subdictionaries.
result Significant computational complexity reduction and improved glitch detection in LIGO experiment.

A new image interpolation model using sparse representation and nonlocal linear regression.

problem Image interpolation without blurring and noise.
method Sparse representation, nonlocal self-similarity, nonlocal linear regression, adaptive sub-dictionary learning, weighted encoding.
result Our method outperforms state-of-the-art methods in quantitative measures and visual quality.

Paper improves dictionary learning by addressing local and global coherence issues.

problem Improving dictionary learning by addressing local and global coherence issues.
method The paper uses the ITKrM algorithm to prove contraction under relaxed conditions and proposes replacing bad dictionaries with carefully designed candidates.
result The adaptive version of ITKrM can recover a generating dictionary from randomly initialized dictionaries of various sizes and learn meaningful dictionaries on image data.

The paper studies recovery problems for ReLU networks, providing theoretical results on dictionary learning and robust signal recovery.

problem Recovery of latent vectors and signal from noisy nonlinear sketches of ReLU networks.
method Theoretical analysis of dictionary learning and robust signal recovery problems using ReLU networks.
result Generalized LASSO algorithm can recover signals with a specified error bound under certain conditions.

This work learns sparse tensor representations using mixtures of separable dictionaries.

problem Learning sparse representations of tensor data with structured models.
method Proposes and explores learning a mixture of separable dictionaries with sufficient conditions for local identifiability.
result Developed computational algorithms for batch and online learning.

We present a two-stage approach for learning dictionaries for object classification tasks based on the principle of information maximization. The proposed method seeks a dictionary that is compact, discriminative, and generative. In the first stage, dictionary atoms are selected from an initial dictionary by maximizing…

2012-08-17abs ↗pdf ↗

Many techniques in computer vision, machine learning, and statistics rely on the fact that a signal of interest admits a sparse representation over some dictionary. Dictionaries are either available analytically, or can be learned from a suitable training set. While analytic dictionaries permit to capture the global st…

2013-03-21abs ↗pdf ↗

ProSper learns data components with non-standard priors and superpositions.

problem Learning complex data components with non-standard priors and superpositions.
method Probabilistic algorithms for sparse coding with non-standard priors and superpositions.
result Library supports scalable and parallelizable dictionary learning for large-scale applications.