Type: Preprint
Publication Date: 2024-01-19
Citations: 1
DOI: https://doi.org/10.21203/rs.3.rs-3864810/v1
Abstract We study discretizations by powers of discrete Laplacians of fully nonlinear equations. Our problems are parabolic and of order σ є (0,2) since they involve fractional Laplace operators (-Δ) σ/2 . They arise e.g. in control and game theory as dynamic programming equations, and solutions are non-smooth in general and should be interpreted as viscosity solutions. Our approximations are realized as finite-difference quadrature approximations which are 2nd order accurate for all values of σ . The accuracy of previous approximations depend on σ and are worse when σ is close to 2. We show that the schemes are monotone, consistent, L ∞ -stable, and convergent using a priori estimates, viscosity solutions theory, and the method of half-relaxed limits. We present several numerical examples. 2020 Mathematics Subject Classification. 49L25, 35J60, 34K37, 35R11, 35J70, 45K05, 49L25, 49M25, 93E20, 65N06, 65R20, 65N12.
Action | Title | Year | Authors |
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+ | Precise error bounds for numerical approximations of fractional HJB equations | 2024 |
Indranil Chowdhury Espen R. Jakobsen |