Black-box Mixed-Variable Optimisation using a Surrogate Model that Satisfies Integer Constraints
arXiv:2006.04508 · doi:10.1145/3449726.3463136
Abstract
A challenging problem in both engineering and computer science is that of minimising a function for which we have no mathematical formulation available, that is expensive to evaluate, and that contains continuous and integer variables, for example in automatic algorithm configuration. Surrogate-based algorithms are very suitable for this type of problem, but most existing techniques are designed with only continuous or only discrete variables in mind. Mixed-Variable ReLU-based Surrogate Modelling (MVRSM) is a surrogate-based algorithm that uses a linear combination of rectified linear units, defined in such a way that (local) optima satisfy the integer constraints. This method outperforms the state of the art on several synthetic benchmarks with up to 238 continuous and integer variables, and achieves competitive performance on two real-life benchmarks: XGBoost hyperparameter tuning and Electrostatic Precipitator optimisation.
Ann Math Artif Intell (2020)
References in corpus (7)
- Dealing with Integer-valued Variables in Bayesian Optimization with Gaussian Processes
- Dealing with Categorical and Integer-valued Variables in Bayesian Optimization with Gaussian Processes
- BOHB: Robust and Efficient Hyperparameter Optimization at Scale
- Bayesian Optimization of Combinatorial Structures
- Mixed-Variable Bayesian Optimization
- Bayesian Optimisation over Multiple Continuous and Categorical Inputs
- Black-box Combinatorial Optimization using Models with Integer-valued Minima