Adaptability provides additional value to stakeholders over the whole life-cycle. But the
systematic design of product life-cycle properties into complex systems constitutes an
ambiguous task. Design for Adaptability (DfA) is an evolving topic in both science and
industry. However, the transformation of a system to a desired “amount” of adaptability is
impeded by lack of transparency of dependencies among system elements and their vague
influence on the properties. Therefore, we present methodology, which allows improving
systematically the adaptability of a system. The first step clarifies of the adaptability business
case. Then, the system model is generated and analyzed. Dependent on the business case
measures for improvement can be derived. At the example of an automotive braking system
for an electric vehicle, we demonstrated the application of the methodology.
«
Adaptability provides additional value to stakeholders over the whole life-cycle. But the
systematic design of product life-cycle properties into complex systems constitutes an
ambiguous task. Design for Adaptability (DfA) is an evolving topic in both science and
industry. However, the transformation of a system to a desired “amount” of adaptability is
impeded by lack of transparency of dependencies among system elements and their vague
influence on the properties. Therefore, we present methodol...
»