Abstract
A piping and instrumentation diagram (P&ID) is a central reference document in chemical process engineering. Currently, chemical engineers manually review P&IDs through visual inspection to find and rectify errors. However, engineering projects can involve hundreds to thousands of P&ID pages, creating a significant revision workload. This study proposes a rule-based method to support engineers with error detection and correction in P&IDs. The method is based on a graph representation of P&IDs, enabling automated error detection and correction, i.e., autocorrection, through rule graphs. We use our pyDEXPI Python package to generate P&ID graphs from DEXPI-standard P&IDs. In this study, we developed 33 rules based on chemical engineering knowledge and heuristics, with five selected rules demonstrated as examples. A case study on an illustrative P&ID validates the reliability and effectiveness of the rule-based autocorrection method in revising P&IDs.
Cite
CITATION STYLE
Balhorn, L. S., Seijsener, N., Dao, K., Kim, M., Goldstein, D. P., Driessen, G. H. M., & Schweidtmann, A. M. (2025). Rule-Based Autocorrection of Piping and Instrumentation Diagrams (P&IDs) on Graphs. In Proceedings of the 35th European Symposium on Computer Aided Process Engineering (ESCAPE 35) (Vol. 4, pp. 1656–1661). PSE Press. https://doi.org/10.69997/sct.150968
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