Keywords: Digital Twin, Solution Space Engineering, Dynamical Systems Design, Multi-Body Simulation, Noise-Vibration Reduction, Human-Centered Design
Scope
Establishing product requirements in product design is crucial to construct an attribute dependency graph (ADG). Utilizing simulation-based framework and solution space engineering methods enhances product design optimization based on the abovementioned ADG. With a simulation model for the soil compaction process, including the vibratory rammer, performance can be enhanced while mitigating dynamic loads on the operator. Moreover, evolving simulations into a digital twin (DT) allows for continuous updates and optimization in response to real-world data and conditions. Therefore, this project proposes a systematic approach to designing a requirements-compliant and robust vibratory rammer safe for the operator while optimizing real-time machine operation via a DT.
