A general linear method approach to the design and optimization of efficient, accurate, and easily implemented time-stepping methods in CFD.
Victor DeCariaSigal GottliebZachary J. GrantWilliam J. LaytonPublished in: J. Comput. Phys. (2022)
Keyphrases
- hybrid method
- significant improvement
- preprocessing
- synthetic and real images
- high accuracy
- classical methods
- cross validation
- classification method
- conjugate gradient method
- computationally efficient
- computational cost
- alternative methods
- methods require
- statistical methods
- machine learning methods
- linear regression
- optimization method
- completely automatic
- discriminant function
- nonlinear functions
- high precision
- computationally expensive
- benchmark data sets
- efficient optimization
- constrained optimization
- model selection
- continuous variables
- feature space
- chronological backtracking
- methods outperform
- pairwise
- multi objective
- dynamic programming
- reconstruction method
- heuristic methods
- linear models
- support vector machine
- gold standard
- linear model
- highly accurate
- clustering method
- search methods