Object-centric process mining is a new branch of process mining where events are associated with multiple objects, and where object-to-object interactions are essential to understand the process dynamics. Traditional event data models, also called case-centric, are unable to cope with the complexity introduced by these more refined relationships. Several models have been made to move from case-centric to Object-Centric Event Data (OCED), trying to retain simplicity as much as possible. Still, these suffer from inherent ambiguities, and lack a comprehensive support of essential dimensions related to time and (dynamic) relations. In this work, we propose to fill this gap by leveraging a well-founded ontology of events and bringing ontological foundations to OCED, with a three-step approach. First, we start from key open issues reported in the literature regarding current OCED metamodels, and witness their ambiguity and expressiveness limitations on illustrative and representative examples proposed therein. Second, we consider the OCED Core Model, currently proposed as the basis for defining a new standard for object-centric event data, and we enhance it by grounding it on a lightweight version of UFO-B called gUFO, a well-known foundational ontology tailored to the representation of objects, events, time, and their (dynamic) relations. This results in a new metamodel, which we call gOCED. The third contribution then shows how gOCED at once covers the features of existing metamodels preserving their simplicity, and extends them with the essential features needed to overcome the ambiguity and expressiveness issues reported in the literature.
翻译:面向对象的过程挖掘是过程挖掘的一个新兴分支,其中事件与多个对象相关联,且对象间的交互对于理解过程动态至关重要。传统的事件数据模型(也称为面向案例的模型)无法应对这些更精细关系所带来的复杂性。已有若干模型尝试从面向案例转向面向对象事件数据(OCED),并尽可能保持简洁性。然而,这些模型仍存在固有的模糊性,且缺乏对时间及(动态)关系等关键维度的全面支持。本研究旨在通过利用一个具有坚实理论基础的事件本体论,为OCED建立本体论基础,并采用三步法填补这一空白。首先,我们从文献中总结当前OCED元模型的关键开放性问题,并通过其中提出的示例性案例揭示其模糊性与表达力局限。其次,我们以当前被提议作为面向对象事件数据新标准基础的OCED核心模型为起点,将其奠基于轻量级UFO-B版本(即gUFO)之上进行增强。gUFO是一种专为表示对象、事件、时间及其(动态)关系而设计的知名基础本体论,由此我们提出了一个新的元模型,称为gOCED。最后,第三项贡献展示了gOCED如何同时涵盖现有元模型的特征并保持其简洁性,同时通过引入克服文献中所述模糊性与表达力问题所需的关键特性,对现有模型进行了扩展。