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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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7152229 · Feb 202019922001200920182026
48 results for one-vs.-rest SVM

Proposes SOVR loss to improve adversarial robustness by increasing logit margins.

problem Adversarial training's difficulty in robustness against sophisticated attacks.
method Introduces SOVR loss function that switches from cross-entropy to one-vs-the-rest loss for important samples.
result SOVR loss increases logit margins of important samples, improving robustness against Auto-Attack.

New research shows SVM and related methods can overfit without harm in multiclass classification.

problem Understanding benign overfitting in multiclass classification.
method Analyzing three training algorithms: ERM with cross-entropy, least-squares, and one-vs-all SVM.
result All three algorithms can lead to classifiers that interpolate training data and have equal accuracy under high overparameterization.

Paper designs optimal ECOCs using IP for robust multiclass classification.

problem Designing robust ECOCs for multiclass classification.
method Integer Programming formulation to minimize codebooks with desirable error-correcting properties, leveraging graph-theoretic structure and edge clique covers.
result IP-generated codebooks achieve high nominal and robust adversarial accuracy.

Extends PCVM for multi-class classification with improved accuracy.

problem Lack of probabilistic outputs and contradictory predictions in multi-class classification.
method Proposes mPCVM with two learning algorithms: top-down and bottom-up.
result Superior performance, especially with many classes, validated on synthetic and benchmark data.

Survey of multi-class classification methods and their performance.

problem Generalizing binary classification to multi-class problems.
method Recursive control language to describe partitioning strategies, manual and automatic design.
result One-vs.-one is generally the best solution, but adaptive methods can outperform it in some cases.

A new meta-learning method for faster adaptive multiclass classification.

problem Efficiently designing multiclass classifiers that adaptively merge classes into a hierarchical structure.
method Adaptive hierarchical classification tree construction using empirical Bayes error rates and minimal spanning trees.
result The proposed method can learn faster and achieve competitive accuracy compared to existing methods.

Improves uncertainty estimation and OOD detection in neural networks.

problem Accurate uncertainty estimation and OOD detection in neural networks.
method Investigates one-vs-all and distance-based logit representations for probabilities.
result One-vs-all formulations improve calibration without additional complexity.

Proposes a new method to improve multiclass probability calibration.

problem Uncalibrated class probabilities in multiclass classifiers leading to over-confidence.
method Dirichlet calibration method applicable to any model class, derived from Dirichlet distributions.
result Improved probabilistic predictions across various datasets and classifiers.

Radar-based classification improves accuracy of autonomous driving by identifying new classes.

problem Challenges in classifying sparse radar data for autonomous driving.
method Ensemble of classifiers using one-vs-one and one-vs-all strategies, with feature selection.
result Improved classification performance and identification of novel classes.

Sparse classifiers such as the support vector machines (SVM) are efficient in test-phases because the classifier is characterized only by a subset of the samples called support vectors (SVs), and the rest of the samples (non SVs) have no influence on the classification result. However, the advantage of the sparsity has…

2014-01-27abs ↗pdf ↗

Bonsai learns fast, deep trees for XMC with fast training and high accuracy.

problem Efficiently learning multi-label classification models with millions of labels.
method Develops Bonsai suite of algorithms that generalize label representation and learn shallow trees.
result Bonsai achieves best of fast training and high accuracy on XMC tasks.

Paper identifies resting positions using EGG, ECG, respiration rate, and SpO2.

problem Identifying the resting position for health monitoring.
method Hybrid stacked ensemble machine learning model combining Decision tree, Random Forest, and Xgboost.
result 100% accurate prediction of resting positions.

This paper improves multi-class calibration methods using mutual information maximization-based binning.

problem Calibration of deep neural network predictions, especially for small prior classes.
method I-Max concept for binning, shared class-wise calibration strategy.
result Improves multi-class ranking and calibration performance using a small calibration set.

New linear algorithms improve wSVMs for multiclass probability estimation.

problem Estimating conditional probabilities for multiclass problems.
method Proposed baseline learning and OVA learning schemes to improve wSVMs.
result Linear algorithms achieve optimal computational efficiency and good estimation accuracy.

Support Vector Machines, SVMs, and the Large Margin Nearest Neighbor algorithm, LMNN, are two very popular learning algorithms with quite different learning biases. In this paper we bring them into a unified view and show that they have a much stronger relation than what is commonly thought. We analyze SVMs from a metr…

2012-01-23abs ↗pdf ↗

This paper analyzes the impact of asynchronous updates on OVA models' accuracy.

problem The impact of asynchronous updates on the accuracy of OVA models.
method Defined a metric to quantify dataset differences, analyzed three factors (number of classes, data points, and training dataset divergence), and evaluated Spoken Language Understanding system.
result The proposed metric correlates strongly with model performances.

This work extends SVM error bounds to weighted SVM and introduces hyperparameter selection methods.

problem Improving SVM performance through effective hyperparameter selection.
method Extending span error bound theory to weighted SVM and introducing hyperparameter selection methods.
result The span rule is the most effective method for weighted SVM hyperparameter selection and provides the best predictor of test error.

Support vector machines (SVMs) are invaluable tools for many practical applications in artificial intelligence, e.g., classification and event recognition. However, popular SVM solvers are not sufficiently efficient for applications with a great deal of samples as well as a large number of features. In this paper, thus…

2010-08-24abs ↗pdf ↗

New method reduces labeler costs by aggregating predictions from local classifiers.

problem Reduce labeler costs in multiclass classification.
method Model KK-class classification using smaller classifiers trained on subsets of tasks.
result Near-optimal scheme for designing classifier configurations reduces labeler costs.

Paper addresses SVM bias in high-dimension, low-sample-size settings.

problem Bias in SVM performance in high-dimension, low-sample-size settings.
method Proposes a bias-corrected SVM (BC-SVM) to improve SVM performance.
result BC-SVM gives preferable performances in high-dimension, low-sample-size settings.

Prior knowledge can be used to improve predictive performance of learning algorithms or reduce the amount of data required for training. The same goal is pursued within the learning using privileged information paradigm which was recently introduced by Vapnik et al. and is aimed at utilizing additional information avai…

2013-06-13abs ↗pdf ↗

This paper improves SVM classification using a differentiable loss function and a gradient method.

problem Improving SVM classification with a differentiable loss function.
method Uses the Huberized Support Vector Machine (HSVM) and Proximal Gradient (PG) method.
result The proposed method converges linearly and supports the solution in finite time.

BrainSurfCNN predicts task contrasts from resting-state fingerprints, improving accuracy over baseline.

problem Predicting task-evoked activity from resting-state functional connectivity.
method Surface-based convolutional neural network (BrainSurfCNN) with reconstructive-contrastive loss.
result Significantly improved accuracy in predicting task contrasts over baseline.