Online Estimation via Offline Estimation: An Information-Theoretic Framework
Dylan J. Foster, Yanjun Han, Jian Qian, Alexander Rakhlin
Abstract
The classical theory of statistical estimation aims to estimate a parameter of interest under data generated from a fixed design ("offline estimation"), while the contemporary theory of online learning provides algorithms for estimation under adaptively chosen covariates ("online estimation"). Motivated by connections between estimation and interactive decision making, we ask: is it possible to convert offline estimation algorithms into online estimation algorithms in a black-box fashion? We investigate this question from an information-theoretic perspective by introducing a new framework, Oracle-Efficient Online Estimation (OEOE), where the learner can only interact with the data stream indirectly through a sequence of offline estimators produced by a black-box algorithm operating on the stream. Our main results settle the statistical and computational complexity of online estimation in this framework. Statistical complexity. We show that information-theoretically, there exist algorithms that achieve near-optimal online estimation error via black-box offline estimation oracles, and give a nearly-tight characterization for minimax rates in the OEOE framework. Computational complexity. We show that the guarantees above cannot be achieved in a computationally efficient fashion in general, but give a refined characterization for the special case of conditional density estimation: computationally efficient online estimation via black-box offline estimation is possible whenever it is possible via unrestricted algorithms. Finally, we apply our results to give offline oracle-efficient algorithms for interactive decision making.
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Install the CLIlune papers fulltext cbc9ac5e-dddc-4416-a378-73ab3e5852dcCited by top-tier papers8
- Is Behavior Cloning All You Need? Understanding Horizon in Imitation LearningDylan J. Foster, Adam Block, Dipendra MisraNeurIPS 2024 · 112 citations
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- How Does Variance Shape the Regret in Contextual Bandits?Zeyu Jia, Jian Qian, Alexander Rakhlin, Chen-Yu WeiNeurIPS 2024 · 13 citations
- Scalable Online Exploration via CoverabilityPhilip Amortila, Dylan J. Foster, Akshay KrishnamurthyICML 2024 · 10 citations
- Offline Oracle-Efficient Learning for Contextual MDPs via Layerwise Exploration-Exploitation TradeoffJian Qian, Haichen Hu, David Simchi-LeviNeurIPS 2024 · 7 citations
Builds on10
- Beyond UCB: Optimal and Efficient Contextual Bandits with Regression OraclesDylan J. Foster, Alexander RakhlinICML 2020 · 241 citations
- Efficient First-Order Contextual Bandits: Prediction, Allocation, and Triangular DiscriminationDylan J. Foster, Akshay KrishnamurthyNeurIPS 2021 · 62 citations
- Optimal Learners for Realizable Regression: PAC Learning and Online LearningIdan Attias, Steve Hanneke, Alkis Kalavasis, Amin Karbasi et al.NeurIPS 2023 · 33 citations
- Tight Bounds on Minimax Regret under Logarithmic Loss via Self-ConcordanceBlair L. Bilodeau, Dylan J. Foster, Daniel M. RoyICML 2020 · 18 citations
- Model-Free Reinforcement Learning with the Decision-Estimation CoefficientDylan J. Foster, Noah Golowich, Jian Qian, Alexander Rakhlin et al.NeurIPS 2023 · 16 citations
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