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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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117235352469 · May 202619922001200920182026
48 results for relative upper-confidence bounds

A new algorithm picks two items for users based on context, achieving better performance than existing methods.

problem Picking two items from a set for users with contextual input and user choice.
method A second-order algorithm framework using relative upper-confidence bounds for exploration and exploitation.
result Regret bound of O(QT+TQTlogT+TlogT)O(Q_T + \sqrt{TQ_T\log T} + \sqrt{T}\log T), demonstrating improved performance.

Proof connects Gittins indices to Bayesian upper confidence bounds for patient agents.

problem Connecting Gittins indices to Bayesian upper confidence bounds for patient agents.
method Proof using Gaussian multi-armed bandit problem with discount factor γ.
result Gittins index equals γ-quantile of posterior mean plus vanishing error term.

Paper improves regret bounds for Gaussian process upper confidence bound in Bayesian optimization.

problem Minimizing regret in Gaussian process bandit optimization.
method Gaussian process upper confidence bound (GP-UCB) algorithm with refined analysis.
result Achieves O(Tln2T)O(\sqrt{T \ln^2 T}) cumulative regret under squared exponential kernel.

Improved Bayesian optimisation method using randomised Gaussian process UCB.

problem Improving performance in Bayesian optimisation.
method Developed a modified Gaussian process upper confidence bound (GP-UCB) acquisition function.
result The method achieves better performance than GP-UCB in various problems.

Bayesian methods improve drug discovery experiment design.

problem Optimizing drug screening experiments in high-dimensional data.
method Bayesian inference and optimisation with upper confidence bound algorithms, Thompson sampling, and sparse tree search.
result Sparse tree search techniques outperform other methods in drug toxicity screening.

A new method optimizes robustness measures under input uncertainty using randomized Gaussian process upper confidence bound.

problem Optimizing robustness measures under input uncertainty.
method Randomized robustness measure GP-UCB (RRGP-UCB) that samples β from a chi-squared-based distribution.
result RRGP-UCB provides tight bounds on expected regret.

Efficiently reduces training and inference costs by dynamically selecting important channels.

problem Reducing memory and computational demands for neural network training and inference.
method Integrates pruning into training by selecting only highly salient channels for execution, using combinatorial upper confidence bound algorithm.
result Reduces computational cost up to 4x and parameter count up to 9x.

AdaLinUCB optimizes exploration-exploitation for contextually varying costs.

problem Optimizing decision-making in environments with varying exploration costs.
method Adaptive Upper-Confidence-Bound (AdaLinUCB) algorithm for opportunistic learning.
result AdaLinUCB achieves O((log T)^2) regret bound, significantly outperforming other algorithms.

EBUCB framework achieves optimal regret with bounded approximate inference error.

problem Theoretical gap between practical performance and theoretical justification of Bayesian bandit algorithms with approximate inference.
method Enhanced Bayesian Upper Confidence Bound (EBUCB) framework that accommodates bandit problems with approximate inference.
result EBUCB achieves optimal regret order O(logT)O(\log T) under certain conditions on inference error.

Bayesian bandit algorithms with approximate inference improve regret bounds in stochastic linear bandits.

problem Theoretical justification for Bayesian bandit algorithms with approximate inference in stochastic linear bandits.
method Proposed a theoretical framework to analyze approximate inference impact and conducted frequentist regret analysis on LinTS and LinBUCB.
result LinTS and LinBUCB preserve their original regret upper bounds with larger constant terms in approximate inference settings.

A new algorithm for better decision-making in recommendation systems.

problem Stochastic multi-armed bandit problem and cold start problem in recommender systems.
method Proposes Hellinger-UCB, a variant of UCB algorithm using squared Hellinger distance.
result Hellinger-UCB reaches the theoretical lower bound and outperforms other algorithms in practical applications.

Bayes-UCBVI tackles reinforcement learning with a new upper confidence bound method.

problem Optimizing exploration in reinforcement learning without bonuses.
method Bayes-UCBVI uses a quantile of a Q-value function posterior as an upper confidence bound.
result Proves a regret bound of order O~(H3SAT)\widetilde{O}(\sqrt{H^3SAT}) for tabular reinforcement learning.

New algorithm reduces regret and constraint violation in adversarial CMDP learning.

problem Online learning for episodic stochastically constrained Markov decision processes (CMDPs) with adversarial loss.
method Upper Confidence Primal-Dual Reinforcement Learning (UC-PDL) algorithm.
result Achieves O~(LSAT)\widetilde{\mathcal{O}}(L|\mathcal{S}|\sqrt{|\mathcal{A}|T}) upper bounds of both regret and constraint violation.

This paper improves GP-UCB by using a shifted exponential distribution for confidence parameters.

problem Theoretical confidence parameter in GP-UCB increases with iterations, leading to large values.
method Introduced IRGP-UCB, a randomized variant of GP-UCB using a shifted exponential distribution for confidence parameters.
result IRGP-UCB achieves sub-linear regret without increasing the confidence parameter.

Efficiently identifies good policies by choosing contexts for human feedback.

problem Efficiently identifying good policies in applications with high feedback costs.
method Introduces offline contextual dueling bandit setting and an upper-confidence-bound style algorithm.
result Proves a regret bound and shows superior performance over uniformly sampled contexts.

New bounds for Bayesian bandits show prior improves performance.

problem Improving regret bounds for Bayesian bandits.
method Upper confidence bound algorithm with finite-time logarithmic regret bounds.
result Derives O(cΔlogn)O(c_Δ\log n) and O(chlog2n)O(c_h \log^2 n) upper bounds for Bayesian bandits.

Two new algorithms reduce group regret in abruptly changing multi-player bandit problems.

problem Reducing group regret in multi-player bandit problems in environments that change suddenly.
method Design of two novel algorithms: RR-SW-UCB# and SW-DLP.
result Expected cumulative group regret converges to zero over time.

Algorithm maximizes rewards with a budget and giving up option.

problem Sequential decision-making with stochastic rewards and resource consumption.
method Upper Confidence Bound (UCB) algorithm for maximizing cumulative reward.
result Logarithmic regret bound with improved dependence on problem parameters.

Improved BO algorithms reduce prediction error under Gaussian noise.

problem Reducing prediction error in Bayesian optimization with Gaussian noise.
method Established new prediction error bounds for Gaussian process under frequentist setting.
result Proved improved convergence rates of cumulative regret for GP-UCB and GP-TS.

This paper proposes a DGP approach with UCBs for point target tracking over WSNs.

problem Uncertainty quantification in distributed machine learning-based tracking over WSNs.
method Distributed Gaussian process (DGP) approach with upper confidence bounds (UCBs).
result UCBs provide 88% and 42% higher probability of encompassing true target states in X and Y coordinates, respectively.

Study optimal adaptive allocation for multi-armed bandits with Markovian rewards.

problem Optimal adaptive allocation for multi-armed bandits with Markovian rewards.
method Round-robin Kullback-Leibler upper confidence bounds for optimal adaptive allocation.
result Logarithmic dependence of regret on time horizon, asymptotically optimal.

Improved algorithm for Lipschitz bandit optimization with reduced complexity.

problem Efficiently solving the Lipschitz bandit optimization problem.
method Tree UCB-Hoeffding algorithm with adaptive partitions and tree-based search strategy.
result Achieves the regret lower bound up to a logarithmic factor with O(TlogT)\mathcal{O}(T\log T) computational cost.

FP-UCB algorithm achieves bounded regret for finitely parameterized multi-armed bandits.

problem Finitely parameterized multi-armed bandits with unknown but known parameter set.
method FP-UCB algorithm using structural information about the parameter set.
result FP-UCB achieves bounded regret under structural condition, logarithmic otherwise.

This paper analyzes regret bounds for Gaussian process Thompson sampling.

problem Analyzing the performance of Gaussian process Thompson sampling (GP-TS) in Bayesian optimization.
method The paper derives several regret bounds for GP-TS, including a lower bound, upper bounds on the second moment of cumulative regret, expected lenient regret, and improved cumulative regret.
result The paper provides improved regret upper bounds for GP-TS, showing that it suffers from a polynomial dependence on 1/δ1/δ with probability δδ.

Study of multi-armed bandits with state-switching rewards using Markov models.

problem Multi-armed bandit problem with state-switching rewards.
method Spectral method-of-moments estimations for hidden Markov models, belief error control, upper-confidence-bound methods.
result Upper bound of O(T2/3logT)O(T^{2/3}\sqrt{\log T}) for the learning algorithm performance.

This paper improves Bayesian optimization by using pseudo-points to enhance model accuracy.

problem Expensive black-box optimization problems, especially in parameter tuning and experimental design.
method Generates pseudo-points to improve Gaussian process models in Bayesian optimization.
result Cumulative regret can be generally upper bounded using the proposed framework.

Algorithm aggregates rewards from multiple players to learn related tasks in online bandit learning.

problem Learning related but slightly different tasks in an online setting with heterogeneous feedback.
method RobustAgg(ε)(ε) algorithm that aggregates rewards from different players.
result Achieves instance-dependent regret guarantees and nearly matching lower bounds.

A new UCB algorithm for heavy-tailed bandits with near-optimal regret.

problem Sequential decision making in uncertain environments with heavy-tailed rewards.
method Data-driven, distribution-free UCB algorithm combining resampled median-of-means and UCB.
result Near-optimal regret bound for heavy-tailed distributions.

A new federated multi-armed bandit framework with personalization balances generalization and personalization.

problem Balancing generalization and personalization in federated multi-armed bandits.
method Proposed a Personalized Federated Upper Confidence Bound (PF-UCB) algorithm to achieve a O(log(T))O(\log(T)) regret.
result PF-UCB achieves an O(log(T))O(\log(T)) regret regardless of personalization degree and has similar instance dependency to lower bound.

InfoTree improves reinforcement learning by optimizing tool use with a greedy submodular approach.

problem Maximizing information from tool use in reinforcement learning with limited resources.
method Formalizes Rollout Informativeness, recasts state selection as submodular maximization, and uses UUCB and ABA.
result InfoTree outperforms existing methods across various benchmarks, improving performance by 18.2% on average.

Study optimizes dynamic product selection and pricing using censored preference feedback.

problem Maximizing revenue from dynamic assortment and pricing decisions.
method Proposes a censored multinomial logit model and LCB pricing strategy combined with UCB or TS product selection.
result Achieves optimal regret bounds for dynamic pricing and selection.