Open AccessEngineeringComputer Science

M. Arnold, C. Clauß, Tom Schierz

2013.3.1Archive of Mechanical Engineering

DOI: 10.2478/meceng-2013-0005

tlooto Summary

This paper focuses on reliable error estimation for communication step size control in this framework and investigates new investigations on error estimation and stabilization techniques in FMI for Model Exchange and Co-Simulation v2.0 compatible co-simulation environments.

Abstract

Complex multi-disciplinary models in system dynamics are typically composed of subsystems. This modular structure of the model reflects the modular structure of complex engineering systems. In industrial applications, the individual subsystems are often modelled separately in different mono-disciplinary simulation tools. The Functional Mock-Up Interface (FMI) provides an interface standard for coupling physical models from different domains and addresses problems like export and import of model components in industrial simulation tools (FMI for Model Exchange) and the standardization of co-simulation interfaces in nonlinear system dynamics (FMI for Co-Simulation), see https://www.fmi-standard.org/. The renewed interest in algorithmic and numerical aspects of co-simulation inspired some new investigations on error estimation and stabilization techniques in FMI for Model Exchange and Co-Simulation v2.0 compatible co-simulation environments. In the present paper, we focus on reliable error estimation for communication step size control in this framework.

Citation format

ARNOLD, M.; CLAUSS, C.; SCHIERZ, Tom. Error analysis and error estimates for co-simulation in FMI for model exchange and co-simulation v2.0. Archive of Mechanical Engineering, 2013, 60: 107–125.