Complexity of products and systems is increasing through digitalization, interdisciplinarity as well as high technology maturity and new business models. In consequence, new product development (NPD) projects need to manage and satisfy a large number of requirements from a broad range of stakeholders. Yet, NPD projects are often delayed due to requirement changes. In this paper, a new method for analyzing requirement change propagation is presented. The method is based on the assessment of requirement interrelations structured in a requirements structure matrix by a modified page-rank algorithm. By the method, a high number of strongly interrelated requirements can be analyzed in an efficient manner. Additionally, higher-level interrelations as well as the relative weights of requirements are also incorporated in the analysis. Hereby, an efficient holistic approach towards the analysis of requirement change propagation is proposed.
Twenty-three years ago, Sheard published a very well-known description of Systems Engineering roles. Each role represents and defines activities and tasks to be taken into account for performing Systems Engineering through the entire system life cycle. As today's more and more complex systems require different considerations and approaches, these activities and tasks have changed and thereby the description of the role model need to be updated. This work introduces the “Role Model for Systems Engineering Application”, which is adapted to today's circumstances, with the intention to give practitioners guidance in applying Systems Engineering. For this purpose, results from literature as well as from research projects and industrial applications experience were analyzed and combined to an updated role description.
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