A variant of two-step modulus-based matrix splitting iteration method for retinex problem
From MaRDI portal
Publication:2167376
DOI10.1007/s40314-022-01952-wOpenAlexW4285396301MaRDI QIDQ2167376
Publication date: 25 August 2022
Published in: Computational and Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s40314-022-01952-w
linear complementarity problemmodulus-based matrix splittingretinex problemtwo-step iteration method
Iterative numerical methods for linear systems (65F10) Preconditioners for iterative methods (65F08)
Cites Work
- Eigenvalue estimates for saddle point matrices of Hermitian and indefinite leading blocks
- Retinex by higher order total variation \(L^1\) decomposition
- A class of modified block SSOR preconditioners for symmetric positive definite systems of linear equations
- The convergence of parallel iteration algorithms for linear complementarity problems
- On choices of iteration parameter in HSS method
- A variational framework for retinex
- A practical formula for computing optimal parameters in the HSS iteration methods
- Two-step modulus-based matrix splitting iteration methods for retinex problem
- Block alternating splitting implicit iteration methods for saddle-point problems from time-harmonic eddy current models
- A Total Variation Model for Retinex
- A modified modulus method for symmetric positive-definite linear complementarity problems
- Optimal parameters in the HSS-like methods for saddle-point problems
- Modulus-based matrix splitting iteration methods for linear complementarity problems
- A modulus iteration method for retinex problem
- Modulus Methods for Nonnegatively Constrained Image Restoration
- A Variational Model with Barrier Functionals for Retinex
- Hermitian and Skew-Hermitian Splitting Methods for Non-Hermitian Positive Definite Linear Systems
- On Greedy Randomized Kaczmarz Method for Solving Large Sparse Linear Systems
- Matrix Analysis and Computations
- Non-Local Retinex---A Unifying Framework and Beyond
- A PDE Formalization of Retinex Theory
- Sufficient conditions for the convergent splittings of non-Hermitian positive definite matrices
This page was built for publication: A variant of two-step modulus-based matrix splitting iteration method for retinex problem