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Bayesian Optimisation

Expensive black-box functions are a common problem in many disciplines, including tuning the parameters of machine learning algorithms, robotics, and other engineering design problems. Bayesian Optimisation is a principled and efficient technique for the global optimisation of these functions. The idea behind Bayesian Optimisation is to place a prior distribution over the target function and then update that prior with a set of “true” observations of the target function by expensively evaluating it in order to produce a posterior predictive distribution. The posterior then informs where to make the next observation of the target function through the use of an acquisition function, which balances the exploitation of regions known to have good performance with the exploration of regions where there is little information about the function’s response.

Source: A Bayesian Approach for the Robust Optimisation of Expensive-to-Evaluate Functions

Papers

Showing 150 of 221 papers

TitleStatusHype
OMLT: Optimization & Machine Learning ToolkitCode2
Cheetah: Bridging the Gap Between Machine Learning and Particle Accelerator Physics with High-Speed, Differentiable SimulationsCode2
BoTorch: A Framework for Efficient Monte-Carlo Bayesian OptimizationCode2
GAUCHE: A Library for Gaussian Processes in ChemistryCode2
NUBO: A Transparent Python Package for Bayesian OptimizationCode1
Achieving Robustness to Aleatoric Uncertainty with Heteroscedastic Bayesian OptimisationCode1
AutoPEFT: Automatic Configuration Search for Parameter-Efficient Fine-TuningCode1
Stochastic Gradient Descent for Gaussian Processes Done RightCode1
EXPObench: Benchmarking Surrogate-based Optimisation Algorithms on Expensive Black-box FunctionsCode1
Developing Optimal Causal Cyber-Defence Agents via Cyber Security SimulationCode1
Sparse Adversarial Video Attacks with Spatial TransformationsCode1
Interpretable Neural Architecture Search via Bayesian Optimisation with Weisfeiler-Lehman KernelsCode1
Max-value Entropy Search for Multi-Objective Bayesian OptimizationCode1
A Quadrature Approach for General-Purpose Batch Bayesian Optimization via Probabilistic LiftingCode1
Benchmarking the Performance of Bayesian Optimization across Multiple Experimental Materials Science DomainsCode1
Neural Diffusion ProcessesCode1
Multi-Objective Bayesian Optimisation and Joint Inversion for Active Sensor FusionCode1
OCTIS: Comparing and Optimizing Topic models is Simple!Code1
Adversarial Attacks on Graph Classification via Bayesian OptimisationCode1
Applications of Gaussian Processes at Extreme Lengthscales: From Molecules to Black HolesCode1
Diversity-Guided Multi-Objective Bayesian Optimization With Batch EvaluationsCode1
AutoLRS: Automatic Learning-Rate Schedule by Bayesian Optimization on the FlyCode1
Learning to Do or Learning While Doing: Reinforcement Learning and Bayesian Optimisation for Online Continuous TuningCode1
Neural Architecture Generator OptimizationCode1
Adversarial Attacks on Graph Classifiers via Bayesian OptimisationCode1
BayesOpt Adversarial AttackCode1
SOBER: Highly Parallel Bayesian Optimization and Bayesian Quadrature over Discrete and Mixed SpacesCode1
Think Global and Act Local: Bayesian Optimisation over High-Dimensional Categorical and Mixed Search SpacesCode1
Batch Bayesian optimisation via density-ratio estimation with guaranteesCode0
Generalising Random Forest Parameter Optimisation to Include Stability and CostCode0
Algorithmic Assurance: An Active Approach to Algorithmic Testing using Bayesian OptimisationCode0
Gaussian Process Priors for Dynamic Paired Comparison ModellingCode0
GPflowOpt: A Bayesian Optimization Library using TensorFlowCode0
Automated Machine Learning for Positive-Unlabelled LearningCode0
Fast Information-theoretic Bayesian OptimisationCode0
Bayesian Optimisation for Sequential Experimental Design with Applications in Additive ManufacturingCode0
Expert-guided Bayesian Optimisation for Human-in-the-loop Experimental Design of Known SystemsCode0
Fast and Reliable Architecture Selection for Convolutional Neural NetworksCode0
Fitting A Mixture Distribution to Data: TutorialCode0
Greed is Good: Exploration and Exploitation Trade-offs in Bayesian OptimisationCode0
Adaptive Batch Sizes for Active Learning A Probabilistic Numerics ApproachCode0
Bayesian optimisation for fast approximate inference in state-space models with intractable likelihoodsCode0
A penalisation method for batch multi-objective Bayesian optimisation with application in heat exchanger designCode0
Effective Estimation of Deep Generative Language ModelsCode0
Distributional Bayesian optimisation for variational inference on black-box simulatorsCode0
Asynchronous Parallel Bayesian Optimisation via Thompson SamplingCode0
Data-driven Prior Learning for Bayesian OptimisationCode0
Bayesian Optimisation Against Climate Change: Applications and BenchmarksCode0
Asynchronous ε-Greedy Bayesian OptimisationCode0
Detection and classification of vocal productions in large scale audio recordingsCode0
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