2022
DOI: 10.1007/s00211-022-01288-x
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Robust treatment of cross-points in optimized Schwarz methods

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Cited by 13 publications
(24 citation statements)
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“…Several approaches can be used to recover the surjectivity of matrix L, and then to make Problem (14) solvable: 1. An additional constraint on the unknowns can be added in order to avoid the linear dependency between Equations ( 26)-( 29).…”
Section: Strategies With Continuous Lagrange Multipliersmentioning
confidence: 99%
See 3 more Smart Citations
“…Several approaches can be used to recover the surjectivity of matrix L, and then to make Problem (14) solvable: 1. An additional constraint on the unknowns can be added in order to avoid the linear dependency between Equations ( 26)-( 29).…”
Section: Strategies With Continuous Lagrange Multipliersmentioning
confidence: 99%
“…These relations are not longer linearly dependent, and Problem (14) with the supplementary equation becomes solvable. A similar strategy was used by Peng and Lee [53] to improve a domain decomposition method for time-harmonic electromagnetic problems.…”
Section: Strategies With Continuous Lagrange Multipliersmentioning
confidence: 99%
See 2 more Smart Citations
“…iterations, independently of the number of subdomains, the decomposition and the partial differential equation that is solved. Such a global communication component is also present in the recent work (Claeys, Collino, Joly andParolin 2020, Claeys andParolin 2022) for time harmonic wave propagation problems, which is based on earlier work of Claeys (2019), where the multi-trace formulation was interpreted as an optimized Schwarz method, including cross points. We will use in what follows the two specific domain decompositions shown in Figure 1.2, namely one dimensional, sequential or strip decompositions, and two dimensional decompositions including cross points.…”
Section: Contents 1 Introductionmentioning
confidence: 99%