Business Process Management Journal · 2007 · 105 citations · 25 references
Business Process IntegrationEngineeringBusiness IntelligenceSoftware SystemsSoftware EngineeringBusiness Process ModelingSystem Of Systems EngineeringProcess Modeling (Business Process Management)ManagementSystems EngineeringBusiness Process ChangeBusiness Process Re-engineeringBusiness Information SystemsDesignProcess SpecificationProcess Systems EngineeringOperations ManagementBpms AnalysisSoftware DesignBusiness Process ManagementBusiness OperationsBusiness Process AutomationBusiness ProcessBusiness
Business process modeling lacks a solid theoretical foundation, creating risks for BPMS design and implementation. The study aims to construct, test, and demonstrate a sophisticated, theory‑based architecture for analyzing BPMS in business process change, emphasizing formal construct transmission across technological media. Using a meta‑survey of academic and business literature, the authors develop a semiotic, block‑based pyramid architecture that identifies core technology blocks—subject, software formalism, IT infrastructure, modeling language, and underlying infrastructure—for BPMS analysis. The proposed architecture is theoretically explained and empirically illustrated, showing that the core technologies and their interrelationships support a more advanced BPMS analysis framework, validated through three case vignettes.
Purpose To construct, test and illustrate a sophisticated and theory‐based architecture for analyzing business process management systems (BPMS) used for business process change. Design/methodology/approach Exploration of business process modeling‐based BPMS via a meta‐survey of academic and business literatures. Two main dimensions are used based upon semiotics and a block‐based BPMS pyramid architecture. Each block is a core technology required for the functioning of the BPMS and include: the subject being modeled; the software formalism; the IT infrastructure; the modeling language and notation; and the underlying technical infrastructure. Findings Theoretically explains and empirically illustrates each core technology in the proposed architecture then does the same for the architecture, its arrangement as a whole and its interrelationships. Recognizes the lack of a theoretical basis for business process modeling constructs and the dangers that this generates. Explains why automatic BPMS require formal construct transmission from subject modeled to modeling hardware and software. Research limitations/implications The architecture's core technologies span numerous disciplines so each set of literatures introduces the component concepts and their bases but is not exhaustive. Originality/value This paper proposes a considerably more sophisticated framework for BPMS analysis than is currently available; it is theoretically and not just empirically based; it uses a novel method of theoretical justification concerned with the transmission of modeled properties and characteristics between several technological media; and it illustrates the innovative analytical use of this architecture and the practical use of BPMS with three different case vignettes.
25
A Mathematical Theory of Communication
Claude E. Shannon · Bell System Technical Journal · 1948 · 78.4K citations
Educational Organizations as Loosely Coupled Systems
Karl E. Weick · Administrative Science Quarterly · 1976 · 7.2K citations