Our benchmarking data is the basis for developing the optimal steering feel. We analyze existing vehicles and steering systems to record the desired parameters and develop your system with a clear focus on these targets.
First, we define test cases in which a good steering feel is noticeable. Using state-of-the-art equipment, we perform the specified driving maneuvers, gather extensive data, and create a precise steering reference model.
This theoretical model simulates various characteristics across the entire steering system and provides crucial inputs for our systems engineering. The software model reflects all relevant parameters, such as friction and damping, enabling for a high level of maturity early in the development process.
In our functional architecture concept, we determine the required functions and the related system layout to achieve the optimal target function.
Systems Engineering Without a Physical Prototype
Our Driver-in-the-Loop (DiL) approach enables precise development of your steering system according to standard specifications, using a driving simulator in place of a physical vehicle. Individual components are tested on a dedicated Hardware-in-the-Loop (HiL) testbed. This allows us to virtually replicate the entire vehicle and optimize existing systems – whether at the component level or within the software.
Innovative Function Development
Benefit from our expert knowledge to develop new functions based on an existing system. We help you to achieve your targets at vehicle level and maximize functionality.
Comprehensive FuSa-Services
Functional safety – simple, secure, and results-driven: Our services cover every aspect of functional safety, from conceptual and series development to system and vehicle validation.
Concept development
- Analysis of hazards and risks (ASIL classification)
- Failure mode and effect analysis, fault tree analysis
- Prototype safety concepts
- Development of functional safety concepts
- Simulation-based construction support
- Safety/supplier management
Systems engineering
- Technical safety concept
- Modeling, draft, and pre-calibration of safety mechanisms
Safety tests
- Test planning/management
- Analysis of fleet data
Holistic Steering Development
We design overall systems built from individual hardware and software components. At AVL, our function-based development approach focuses on defining precise functions and deriving accurate software for the components of a Steer-by-Wire system. This ensures a comprehensive and integrated development process, optimizing both performance and functionality.