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 10511100 of 3073 papers

TitleStatusHype
DADO -- Low-Cost Query Strategies for Deep Active Design Optimization0
Active Learning in Physics: From 101, to Progress, and Perspective0
For Women, Life, Freedom: A Participatory AI-Based Social Web Analysis of a Watershed Moment in Iran's Gender Struggles0
Training Ensembles with Inliers and Outliers for Semi-supervised Active LearningCode0
Active Learning with Contrastive Pre-training for Facial Expression RecognitionCode0
Understanding Uncertainty SamplingCode0
Optimal and Efficient Binary Questioning for Human-in-the-Loop Annotation0
Robust Surgical Tools Detection in Endoscopic Videos with Noisy Data0
REAL: A Representative Error-Driven Approach for Active LearningCode0
Human in the AI loop via xAI and Active Learning for Visual Inspection0
Revisiting Sample Size Determination in Natural Language UnderstandingCode0
Thompson sampling for improved exploration in GFlowNets0
Ticket-BERT: Labeling Incident Management Tickets with Language Models0
PCDAL: A Perturbation Consistency-Driven Active Learning Approach for Medical Image Segmentation and ClassificationCode0
Increasing Performance And Sample Efficiency With Model-agnostic Interactive Feature Attributions0
Large Language Models as Annotators: Enhancing Generalization of NLP Models at Minimal Cost0
BatchGFN: Generative Flow Networks for Batch Active LearningCode0
Exploring Data Redundancy in Real-world Image Classification through Data SelectionCode0
Are Good Explainers Secretly Human-in-the-Loop Active Learners?0
Multi-Task Consistency for Active Learning0
Annotation Cost Efficient Active Learning for Content Based Image Retrieval0
Taming Small-sample Bias in Low-budget Active Learning0
Perturbation-Based Two-Stage Multi-Domain Active Learning0
Graph-based Active Learning for Surface Water and Sediment Detection in Multispectral Images0
Amortized Inference for Gaussian Process Hyperparameters of Structured KernelsCode0
Re-Benchmarking Pool-Based Active Learning for Binary ClassificationCode0
Crowd-Powered Photo Enhancement Featuring an Active Learning Based Local FilterCode0
A Proxy Attack-Free Strategy for Practically Improving the Poisoning Efficiency in Backdoor Attacks0
Maestro: A Gamified Platform for Teaching AI Robustness0
A Markovian Formalism for Active Querying0
Active Learning Guided Fine-Tuning for enhancing Self-Supervised Based Multi-Label Classification of Remote Sensing Images0
Adaptive Batch Sizes for Active Learning A Probabilistic Numerics ApproachCode0
Active-Learning-Driven Surrogate Modeling for Efficient Simulation of Parametric Nonlinear Systems0
Actively learning a Bayesian matrix fusion model with deep side information0
Training-Free Neural Active Learning with Initialization-Robustness GuaranteesCode0
Autonomous Capability Assessment of Sequential Decision-Making Systems in Stochastic Settings (Extended Version)Code0
NTKCPL: Active Learning on Top of Self-Supervised Model by Estimating True Coverage0
A Dataset for Deep Learning-based Bone Structure Analyses in Total Hip ArthroplastyCode0
Active learning of the thermodynamics-dynamics tradeoff in protein condensates0
How to Select Which Active Learning Strategy is Best Suited for Your Specific Problem and Budget0
Query Complexity of Active Learning for Function Family With Nearly Orthogonal Basis0
Deep Active Learning with Structured Neural Depth Search0
Advancing African-Accented Speech Recognition: Epistemic Uncertainty-Driven Data Selection for Generalizable ASR ModelsCode0
Beyond Active Learning: Leveraging the Full Potential of Human Interaction via Auto-Labeling, Human Correction, and Human Verification0
Active Learning on Medical Image0
Agnostic Multi-Group Active Learning0
CS4ML: A general framework for active learning with arbitrary data based on Christoffel functions0
Scaling Evidence-based Instructional Design Expertise through Large Language Models0
Learning the Pareto Front Using Bootstrapped Observation Samples0
atTRACTive: Semi-automatic white matter tract segmentation using active learningCode0
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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