SOTAVerified

Multi-Armed Bandits

Multi-armed bandits refer to a task where a fixed amount of resources must be allocated between competing resources that maximizes expected gain. Typically these problems involve an exploration/exploitation trade-off.

( Image credit: Microsoft Research )

Papers

Showing 701725 of 1262 papers

TitleStatusHype
GuideBoot: Guided Bootstrap for Deep Contextual Bandits0
Inverse Contextual Bandits: Learning How Behavior Evolves over TimeCode0
Adapting to Misspecification in Contextual Bandits0
Neural Contextual Bandits without RegretCode0
Model Selection for Generic Contextual Bandits0
Dueling Bandits with Adversarial Sleeping0
Efficient First-Order Contextual Bandits: Prediction, Allocation, and Triangular Discrimination0
Restless and Uncertain: Robust Policies for Restless Bandits via Deep Multi-Agent Reinforcement Learning0
Bayesian decision-making under misspecified priors with applications to meta-learning0
Regularized OFU: an Efficient UCB Estimator forNon-linear Contextual Bandit0
Knowledge Infused Policy Gradients with Upper Confidence Bound for Relational Bandits0
Multi-player Multi-armed Bandits with Collision-Dependent Reward Distributions0
Random Effect Bandits0
Q-Learning Lagrange Policies for Multi-Action Restless BanditsCode0
A Reduction-Based Framework for Conservative Bandits and Reinforcement Learning0
Reinforcement Learning for Physical Layer CommunicationsCode0
BanditMF: Multi-Armed Bandit Based Matrix Factorization Recommender System0
Smooth Sequential Optimisation with Delayed Feedback0
Banker Online Mirror Descent0
Guaranteed Fixed-Confidence Best Arm Identification in Multi-Armed Bandits: Simple Sequential Elimination Algorithms0
Towards Costless Model Selection in Contextual Bandits: A Bias-Variance Perspective0
A Central Limit Theorem, Loss Aversion and Multi-Armed Bandits0
Fixed-Budget Best-Arm Identification in Structured Bandits0
Scale Free Adversarial Multi Armed Bandits0
Cooperative Stochastic Multi-agent Multi-armed Bandits Robust to Adversarial Corruptions0
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1NeuralLinear FullPosterior-MRCumulative regret1.92Unverified
2Linear FullPosterior-MRCumulative regret1.82Unverified