Work in the field of system analysis in the Forming Machines department includes the development and validation of machine and component models as well as simulation-based research activities. The model spectrum ranges from illustrations of the electromagnetic properties of press drives and other mechatronic systems to holistic digital twins of forming machines. Both analytical and numerical modeling methods are applied. In a suitable combination, hybrid models are created and cross-software coupled simulations are performed. Within the framework of model-based investigations, system properties are analyzed and optimized or, for example, control concepts are developed and tested.
Specifically, simulation-based research activities include, for example, calculation of the service life of machine components, design of auto-adaptive controls to reduce vibrations, or constructive optimization of machine dynamics and machine acoustics.
Work in the field of system analysis in the Forming Machines department includes the development and validation of machine and component models as well as simulation-based research activities. The model spectrum ranges from illustrations of the electromagnetic properties of press drives and other mechatronic systems to holistic digital twins of forming machines. Both analytical and numerical modeling methods are applied. In a suitable combination, hybrid models are created and cross-software coupled simulations are performed. Within the framework of model-based investigations, system properties are analyzed and optimized or, for example, control concepts are developed and tested.
Specifically, simulation-based research activities include, for example, calculation of the service life of machine components, design of auto-adaptive controls to reduce vibrations, or constructive optimization of machine dynamics and machine acoustics.