arrow
Return

Parallel Methods for Composing Difference Approximations in Simulation Dynamic Processes

delete2026-01-01
delete0
PRE
AI
D
Dmytriyeva, Olga *
V
Vira Huskova
DOI:10.1007/978-3-032-04731-1_13delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper investigates methods for composing difference approximations to form one-step and many-step parallel difference schemes of a given order, with a focus on numerically solving the Cauchy problem for both ordinary differential equations and evolutionary partial differential equations. The proposed discrete approximations allow for varying the order of error while moving away from the maximum possible on a fixed set of knots, while ensuring the absolute or A-alpha stability of the numerical solutions. It is shown that one-step schemes of the maximum approximation order remain absolutely stable as the dimensionality of computational blocks increases. Fulfilment of the condition of absolute or A-alpha stability for multistep methods is provided by reducing the maximum possible order of approximation.
Keywords:
Parallel methods
Difference approximations
Absolute stability
Simulation
Cauchyproblem

Journal

D
DIGITALISATION AND DIGITAL TRANSFORMATION, RTC-DIGITAL 2023
IF:
0
Papers:
27
Citations:
0

Organization

M
ministry of education & science of ukraine
Scholars:
1.5W
Papers: 9.7K
Citations: 9