Interdisciplinary engineering of Cyber Physical Production Systems
(CPPS) are often subject to delay, cost overrun, and quality problems or
may even fail due to the lack of efficient information exchange between
multiple interdisciplinary teams working in complex networks within and
across companies. We propose a direct integration of multiteam and
organizational aspects into the graphical notation of the systems
engineering workflow. BPMN++, with 8 new notational elements and two
sub-diagrams enables the modeling of the required cooperation aspects.
BPMN++ provides an improved overview, uniform notation, more
compact presentation, and easier modifiability from an engineering point
of view. We also included a first set of empirical studies and historical
qualitative and quantitative data in addition to subjective expert-based
ratings to increase validity. The use case introduced to explain the
procedure and the notation is derived from surveys in plant
manufacturing focusing on the start-up phase and decision support at
site. This in particular is one of the most complex and critical phases
with potentially high economic impact. For evaluation purposes, we
compare two alternative solutions for a short-term management decision
in the start-up phase of CPPS using the BPMN++ approach.
«
Interdisciplinary engineering of Cyber Physical Production Systems
(CPPS) are often subject to delay, cost overrun, and quality problems or
may even fail due to the lack of efficient information exchange between
multiple interdisciplinary teams working in complex networks within and
across companies. We propose a direct integration of multiteam and
organizational aspects into the graphical notation of the systems
engineering workflow. BPMN++, with 8 new notational elements and two
sub-diagrams e...
»