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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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48 results for follower acquisition

This paper optimizes Bayesian acquisition functions in Gaussian Processes for better optimization.

problem Improving the efficiency of Bayesian optimization methods.
method Analysis of different acquisition functions and optimizers for optimizing Bayesian acquisition functions.
result Optimization of acquisition functions leads to faster and more accurate sampling points.

NM-PPG optimizes adaptive feature acquisition in POMDPs for better predictions.

problem Optimizing adaptive feature acquisition in prediction problems with costly features.
method Non-myopic pathwise policy gradients (NM-PPG) with continuous relaxation and straight-through rollout.
result NM-PPG outperforms state-of-the-art AFA methods on synthetic and real-world datasets.

Simplifies decision-making during medical exams with cost-efficient feature acquisition.

problem Guiding physicians during examination acquisition for accurate and efficient diagnosis.
method Dropout at input layer and integrated gradients at test-time for dynamic feature importance.
result More cost- and feature-efficient than prior approaches, achieving higher overall accuracy.

Study shows active learning can attract followers better than passive methods.

problem Learning to attract followers on Twitter through active user behavior.
method Formalized as a contextual bandit problem, designed reward signals based on follower changes.
result Aggregating experience across agents can adversely impact prediction accuracy, and community response is non-stationary.

Generative models enhance BO for large batch optimization.

problem Efficiently sampling solutions in high-dimensional, combinatorial design spaces.
method Train generative models to sample solutions proportional to expected utility.
result Generative models can approximate optimal target distributions under certain conditions.

The reparameterization trick simplifies optimization of acquisition functions in parallel Bayesian optimization.

problem Optimizing acquisition functions for parallel Bayesian optimization is challenging due to non-convexity, high dimensionality, and intractability.
method Formulate popular acquisition functions as Gaussian integrals and apply the reparameterization trick for gradient-based optimization.
result An efficient Monte Carlo estimator for the upper confidence bound acquisition function is derived.

Bayesian optimization uses acquisition functions to find optimal solutions efficiently.

problem Maximizing acquisition functions is difficult due to their complexity and non-convexity.
method Developed gradient-based optimization for Monte Carlo integration of acquisition functions and identified families of acquisition functions that can be maximized using greedy approaches.
result Greedy approaches can be used to maximize acquisition functions, making Bayesian optimization more practical.

Evidence acquisition costs influence disclosure behavior and preference.

problem How evidence acquisition costs affect disclosure behavior and preference.
method Analyzes sender-receiver interactions with covert and overt evidence acquisition, varying certification costs.
result Equilibria converge to the Pareto-worst free-learning equilibrium as costs vanish, and receivers prefer covert to overt acquisition.

AFA evaluates AI feature acquisition strategies in domains with high costs.

problem Evaluate AI feature acquisition strategies in domains with high costs.
method Apply missing data methods and offline reinforcement learning under NDE and NUC assumptions.
result Propose a novel semi-offline reinforcement learning framework with three new estimators.

Inexact acquisition solutions in BO lead to sublinear cumulative regret.

problem Inexact maximization of acquisition functions in Bayesian optimization.
method Define inaccuracy measure, establish cumulative regret bounds for GP-UCB and GP-TS.
result Inexact BO algorithms can achieve sublinear cumulative regret under appropriate inaccuracy conditions.

A2MT learns agents to select which modalities to acquire at test time.

problem Learning agents to select modalities for multimodal temporal data acquisition.
method Perceiver IO architecture for active acquisition of multimodal temporal data.
result Agents successfully learn cost-reactive acquisition behavior on real-world datasets.

This paper explores optimising acquisition functions in Bayesian optimisation.

problem Optimising acquisition functions in Bayesian optimisation is challenging due to their non-convex nature.
method The authors derive compositional forms for acquisition functions and use them to recast maximisation as a compositional optimisation problem.
result The compositional approach to maximising acquisition functions shows empirical advantages across various tasks.

ATS improves batch Bayesian Optimization by sampling multiple acquisition functions.

problem Efficiently optimizing multiple hyperparameters in parallel.
method ATS: sampling multiple acquisition functions from a stochastic process.
result ATS outperforms classical parallel Thompson Sampling and other batch BO methods.

Optimizes information acquisition to reduce estimation risk and maximize utility.

problem Estimation risk in investor decision-making.
method Derives closed-form value functions using CARA and CRRA utility functions, employs variational methods to explore optimal acquisition.
result Acquiring information earlier is more valuable in reducing estimation risk and achieving higher utility.

Efficiently reduces computational burden of rollout acquisition functions in Bayesian optimization.

problem Expensive computation of rollout acquisition functions in Bayesian optimization.
method Combines quasi-Monte Carlo, common random numbers, and control variates to reduce computational burden. Formulates a policy-search approach to eliminate the need to optimize the rollout acquisition function.
result Significant reduction in computational burden of rollout acquisition functions.

Boundary effects inflate variance in Gaussian processes, leading to acquisition bias.

problem Boundary-induced acquisition bias in Gaussian processes.
method Traced root cause to geometric mechanism of kernel truncation at domain boundaries.
result Boundary effects create distortion that worsens with dimensionality, affecting acquisition behavior.

A framework for cost-effective feature selection in classification.

problem Sequentially selecting features to maximize prediction performance at minimum cost.
method Formulated as a reinforcement learning problem, a joint learning framework for RL agent and classifier is introduced. Orderless LSTM-based set encoding is used for feature subsets.
result Outperforms all baselines in prediction performance and feature acquisition cost on synthetic and real datasets.

BatchBALD selects multiple informative points for deep Bayesian active learning, improving data efficiency.

problem Efficient and diverse selection of points for deep Bayesian active learning.
method Develops BatchBALD, a greedy linear-time approximation to mutual information, as an acquisition function.
result Achieves new state-of-the-art performance on benchmarks, improving data efficiency.

Unified framework connects EI and information-theoretic acquisition functions.

problem Distinguish between Expected Improvement and information-theoretic acquisition functions.
method Introduces Variational Entropy Search (VES) to unify EI and information-theoretic approaches.
result EI can be seen as a variational inference approximation of Max-value Entropy Search (MES).

Dynamic acquisition of features improves predictions with limited data.

problem Limited or uncertain data requires additional relevant information for accurate assessments.
method Proposes models that dynamically acquire new features using conditional mutual information and arbitrary conditional flow.
result Demonstrates superior performance over baselines in multiple settings.

This paper optimizes sampling policies for Bayesian optimization to improve exploration and exploitation.

problem Improving the balance between exploration and exploitation in Bayesian optimization.
method Developed efficient methods to estimate and optimize non-myopic acquisition functions using rollout policies and stochastic gradient optimization.
result Efficient optimization of sampling policies leads to better performance in Bayesian optimization.

New acquisition function improves batch Bayesian active learning.

problem BatchBALD conflates epistemic and aleatoric uncertainty, leading to suboptimal performance.
method Focus on predictive probabilities to separate epistemic uncertainty, leading to better performance and faster evaluation.
result The new acquisition function performs better and allows for larger batches.

This paper analyzes local optimizers in Bayesian optimization for expensive functions.

problem Finding global optimizers in Bayesian optimization is challenging and time-consuming.
method The paper analyzes three acquisition functions (PI, EI, GP-UCB) and their local optimizers.
result Local optimizers can be used effectively in Bayesian optimization, reducing search time.

Optimizes sampling for faster convergence in Bayesian experimental design and uncertainty quantification.

problem Efficiently selecting samples for faster convergence in Bayesian experimental design and uncertainty quantification.
method Output-weighted acquisition functions leveraging likelihood ratio to guide sampling towards relevant regions.
result Superiority of the proposed method in uncertainty quantification and rare event identification.

Analyzes privatizations, mergers, and acquisitions in Mexico's big companies.

problem Understanding economic structural changes and global market insertion.
method Examines the evolution of privatizations, mergers, and acquisitions in Mexico's large companies over the past decades.
result Identifies conductive threads leading to economic changes and global market insertion.

Study on optimal information acquisition in Kyle model with entropy cost.

problem Optimal information acquisition in Kyle model with entropy cost.
method Continuous signals are optimal, and any signal with a logit posterior distribution yields the same ex-ante value.
result Posterior expected payoff becomes normally distributed as information acquisition cost increases.

Paper proposes a reinforcement learning method for efficient information acquisition.

problem Solving the Active Information Acquisition problem for robotic systems.
method Reinforcement Learning approach to choose actions for acquiring information.
result Efficient policies for online execution and real-time control of robotic systems.

This paper optimizes kernel and acquisition functions for high-dimensional Bayesian Optimization.

problem Bayesian Optimization struggles with high-dimensional problems due to computational inefficiency.
method The paper leverages the additionality of the objective function to map kernel and acquisition functions in lower-dimensional subspaces, improving efficiency.
result Efficient optimization of acquisition function in high-dimensional problems.

No-PASt-BO improves GP-Hedge by reducing past influence and normalizing acquisition functions.

problem GP-Hedge's reliance on past performance can lead to poor acquisition function dominance.
method No-PASt-BO reduces past influence and normalizes acquisition functions.
result No-PASt-BO outperforms GP-Hedge on both synthetic and real-world tasks.

GOIMDA selects inputs to maximize expected influence on a goal functional, reducing data acquisition needs.

problem Challenges in active data acquisition for learning and optimization tasks in deep neural networks.
method GOIMDA uses inverse curvature and goal gradient to select inputs maximizing expected influence on a specified goal functional.
result GOIMDA achieves target performance with fewer labeled samples or function evaluations compared to baselines.

A new acquisition function for batch Bayesian optimization avoids complex integrations.

problem Efficiently optimizing batch Bayesian optimization problems.
method A novel acquisition function based on distributionally ambiguous optimization.
result The proposed acquisition function is a lower bound on Expected Improvement and can be computed exactly.

POLAR learns efficient data acquisition policies using pretrained belief representations.

problem Challenges in learning effective policies for adaptive data acquisition.
method POLAR decouples representation learning from policy learning by leveraging pretrained predictive foundation models as belief-state encoders.
result POLAR outperforms state-of-the-art methods across diverse tasks while requiring fewer training samples.

Unsupervised framework captures acquisition variability in structural connectomes.

problem Acquisition differences across sites, scanners, and protocols complicate structural connectome analysis.
method An unsupervised framework using architectural annealing to balance discrete and continuous latent variables.
result Architectural annealing produces stronger site learning than baseline models.

Proposes qPO, a new acquisition strategy for batched Bayesian optimization that maximizes the probability of including the optimum.

problem Efficiently identifying top-performing compounds from a large chemical library.
method qPO (multipoint Probability of Optimality) acquisition strategy that maximizes the probability of including the true optimum.
result Empirical evidence shows that qPO is competitive with and complements other state-of-the-art methods in batched Bayesian optimization.

Proposes efficient data acquisition for personalized treatment effects from observational data.

problem Efficiently acquiring outcomes for personalized treatment effects in observational studies.
method Introduces causal, Bayesian acquisition functions to select points with overlapping support.
result Demonstrates improved sample efficiency and accuracy in learning personalized treatment effects.

BOOST automates kernel and acquisition function selection in Bayesian optimization.

problem Inappropriate kernel and acquisition function combinations lead to poor performance in Bayesian optimization.
method BOOST uses offline evaluation to predict and select the best kernel-acquisition function pair.
result BOOST consistently improves over fixed-hyperparameter BO and is competitive with state-of-the-art adaptive methods.

A new Bayesian optimization method tackles constrained optimization with uncertainties.

problem Optimizing functions with uncertain constraints.
method Bayesian optimization with a new acquisition criterion.
result The new criterion optimizes both objective function improvement and constraint reliability.

Conventional approaches of sampling signals follow the celebrated theorem of Nyquist and Shannon. Compressive sampling, introduced by Donoho, Romberg and Tao, is a new paradigm that goes against the conventional methods in data acquisition and provides a way of recovering signals using fewer samples than the traditiona…

2014-05-21abs ↗pdf ↗

Bayesian optimization surveys information-theoretic acquisition functions.

problem Optimizing noisy, expensive, non-convex functions with unknown gradients.
method Bayesian optimization using Gaussian process surrogate models and information-theoretic acquisition functions.
result Information-theoretic acquisition functions outperform others in real scenarios.