SOTAVerified

Active Learning

Active Learning is a paradigm in supervised machine learning which uses fewer training examples to achieve better optimization by iteratively training a predictor, and using the predictor in each iteration to choose the training examples which will increase its chances of finding better configurations and at the same time improving the accuracy of the prediction model

Source: Polystore++: Accelerated Polystore System for Heterogeneous Workloads

Papers

Showing 22012250 of 3073 papers

TitleStatusHype
Improving the quality control of seismic data through active learning0
Improving Uncertainty Sampling with Bell Curve Weight Function0
In Automation We Trust: Investigating the Role of Uncertainty in Active Learning Systems0
'In-Between' Uncertainty in Bayesian Neural Networks0
Incentive Compatible Active Learning0
Incentivized Collaboration in Active Learning0
Inconsistency-based Active Learning for LiDAR Object Detection0
Incorporating Unlabeled Data into Distributionally Robust Learning0
Incorporating Unlabelled Data into Bayesian Neural Networks0
Increasing Interpretability of Neural Networks By Approximating Human Visual Saliency0
Increasing Performance And Sample Efficiency With Model-agnostic Interactive Feature Attributions0
Incremental Active Opinion Learning Over a Stream of Opinionated Documents0
Incremental Activity Modeling and Recognition in Streaming Videos0
Incremental Deep Learning for Robust Object Detection in Unknown Cluttered Environments0
In Defense of Core-set: A Density-aware Core-set Selection for Active Learning0
Indirect Active Learning0
Influence functions and regularity tangents for efficient active learning0
Information Gain Sampling for Active Learning in Medical Image Classification0
Informative sample generation using class aware generative adversarial networks for classification of chest Xrays0
Instance-Dependent Complexity of Contextual Bandits and Reinforcement Learning: A Disagreement-Based Perspective0
Integrating Active Learning in Causal Inference with Interference: A Novel Approach in Online Experiments0
Integrating Bayesian and Discriminative Sparse Kernel Machines for Multi-class Active Learning0
Integrating Crowdsourcing and Active Learning for Classification of Work-Life Events from Tweets0
Integrating Informativeness, Representativeness and Diversity in Pool-Based Sequential Active Learning for Regression0
Integrating Semi-Supervised and Active Learning for Semantic Segmentation0
Integration of Active Learning and MCMC Sampling for Efficient Bayesian Calibration of Mechanical Properties0
Interactive algorithms: from pool to stream0
Interactive Event Sifting using Bayesian Graph Neural Networks0
Interactive Machine Teaching by Labeling Rules and Instances0
Interactive Ontology Matching with Cost-Efficient Learning0
Interactive Robot Training for Non-Markov Tasks0
Interactive Structure Learning with Structural Query-by-Committee0
Learning to Optimize Contextually Constrained Problems for Real-Time Decision-Generation0
Interpretability-Driven Sample Selection Using Self Supervised Learning For Disease Classification And Segmentation0
Interpret-able feedback for AutoML systems0
Analyzing Data Selection Techniques with Tools from the Theory of Information Losses0
Introducing Geometry in Active Learning for Image Segmentation0
Inverse design optimization framework via a two-step deep learning approach: application to a wind turbine airfoil0
Inverse Reinforcement Learning via Nonparametric Spatio-Temporal Subgoal Modeling0
Investigating Active-learning-based Training Data Selection for Speech Spoofing Countermeasure0
Investigating Active Learning for Short-Answer Scoring0
Investigating Active Learning in Interactive Neural Machine Translation0
Investigating Active Learning Sampling Strategies for Extreme Multi Label Text Classification0
Investigating the Effectiveness of Representations Based on Pretrained Transformer-based Language Models in Active Learning for Labelling Text Datasets0
ISEE.U: Distributed online active target localization with unpredictable targets0
Is margin all you need? An extensive empirical study of active learning on tabular data0
Is More Data Better? Using Transformers-Based Active Learning for Efficient and Effective Detection of Abusive Language0
Is there something I'm missing? Topic Modeling in eDiscovery0
Investigating Active Learning and Meta-Learning for Iterative Peptide Design0
Jasmine: A New Active Learning Approach to Combat Cybercrime0
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1TypiClustAccuracy93.2Unverified
2PT4ALAccuracy93.1Unverified
3Learning lossAccuracy91.01Unverified
4CoreGCNAccuracy90.7Unverified
5Core-setAccuracy89.92Unverified
6Random Baseline (Resnet18)Accuracy88.45Unverified
7Random Baseline (VGG16)Accuracy85.09Unverified