Litcius/Paper detail

Mixed Precision Iterative Refinement with Sparse Approximate Inverse Preconditioning

Erin Carson, Noaman Khan

2023SIAM Journal on Scientific Computing14 citationsDOI

Abstract

.With the commercial availability of mixed precision hardware, mixed precision GMRES-based iterative refinement schemes have emerged as popular approaches for solving sparse linear systems. Existing analyses of these approaches, however, are based on using full LU factorizations to construct preconditioners for use within GMRES in each refinement step. In practical applications, inexact preconditioning techniques, such as incomplete LU or sparse approximate inverses, are often used for performance reasons. In this work, we investigate the use of sparse approximate inverse preconditioners based on Frobenius norm minimization within GMRES-based iterative refinement. We analyze the computation of sparse approximate inverses in finite precision and derive constraints under which user-specified stopping criteria will be satisfied. We then analyze the behavior of and convergence constraints for a five-precision GMRES-based iterative refinement scheme that uses sparse approximate inverse preconditioning, which we call SPAI-GMRES-IR. Our numerical experiments confirm the theoretical analysis and illustrate the resulting tradeoffs between preconditioner sparsity and GMRES-IR convergence rate.Keywordsmixed precisionGMRESiterative refinementapproximate preconditionerssparse linear systemsMSC codes65F0865F1065F5065G5065Y99

Topics & Concepts

Generalized minimal residual methodPreconditionerMathematicsIterative methodSparse matrixIterative refinementAlgorithmMathematical optimizationComputer scienceConvergence (economics)Applied mathematicsInverseLinear systemNorm (philosophy)GaussianEconomicsQuantum mechanicsPhysicsPolitical scienceLawGeometryEconomic growthMathematical analysisMatrix Theory and AlgorithmsElectromagnetic Scattering and AnalysisAdvanced Numerical Methods in Computational Mathematics