Conformance checking of mixed-paradigm process models

Boudewijn F. van Dongen, Johannes De Smedt (Corresponding author), Claudio Di Ciccio, Jan Mendling

Research output: Contribution to journalArticleAcademicpeer-review

25 Citations (Scopus)
158 Downloads (Pure)

Abstract

Mixed-paradigm process models integrate strengths of procedural and declarative representations like Petri nets and DECLARE. They are specifically interesting for process mining because they allow capturing complex behavior in a compact way. A key research challenge for the proliferation of mixed-paradigm models for process mining is the lack of corresponding conformance checking techniques. In this paper, we address this problem by devising the first approach that works with intertwined state spaces of mixed-paradigm models. More specifically, our approach uses an alignment-based replay to explore the state space and compute trace fitness in a procedural way. In every state, the declarative constraints are separately updated, such that violations disable the corresponding activities. Our technique provides for an efficient replay towards an optimal alignment by respecting all orthogonal DECLARE constraints. We have implemented our technique in ProM and demonstrate its performance in an evaluation with real-world event logs.

Original languageEnglish
Article number101685
Number of pages23
JournalInformation Systems
Volume102
DOIs
Publication statusPublished - Dec 2021

Bibliographical note

Funding Information:
The work of C. Di Ciccio was partly supported by the Italian Ministry of Education, University and Research (MIUR) under grant “Dipartimenti di eccellenza 2018-2022” of the Department of Computer Science at Sapienza University of Rome.

Funding

The work of C. Di Ciccio was partly supported by the Italian Ministry of Education, University and Research (MIUR) under grant “Dipartimenti di eccellenza 2018-2022” of the Department of Computer Science at Sapienza University of Rome.

Keywords

  • Conformance checking
  • Declarative process models
  • Hybrid process
  • Imperative process models
  • Mixed-paradigm process models
  • Process mining

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