A Smart Contract-based BPMN Choreography Execution for Management of Construction Processes
Abstract
Construction management can be grouped into two different levels: strategic early planning, that provides the baseline for project monitoring, and \nshort time initiatives, based on objectives and selforganization from actors who are involved in on-site processes. This is currently managed through the \nrepresentation of many separate processes and this does not eliminate the inefficiencies that arise at the level of synchronization of the individual tasks \nperformed by different organizations. Efficiency in construction management implies to take into consideration choreographies because they better \nreflect synchronization of different organizations management processes. On the other hand, smart contracts linked to single task execution assure both promptness and irreversible tracking at single task level. The actual execution of processes depends both on what happens and on the information that flows between the subjects who actually carry out processes asynchronous to each other, so the only possibility to synchronize them is information. This research describes a framework for \napplying BPMN choreographies to construction site processes in order to better model processes and integrate them with smart contracts. Every single activity in the baseline can be modelled as a choreography at a lower level. On the other hand, process performance monitoring can be performed thanks to blockchain tasks notarization. Concrete casting quality assessment process has been chosen as use case. A BPMN choreography has been defined for this purpose and blockchain \napplication for accomplished tasks and information notarization has been developed and tested on a construction site.
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