A generalized red-blue state-merging framework is added to AALpy, enabling passive learning of multiple IO automaton types with plug-in compatibility and scoring functions.
A Framework for Streaming Event-Log Prediction in Business Processes
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abstract
We present a Python-based framework for event-log prediction in streaming mode, enabling predictions while data is being generated by a business process. The framework allows for easy integration of streaming algorithms, including language models like n-grams and LSTMs, and for combining these predictors using ensemble methods. Using our framework, we conducted experiments on various well-known process-mining data sets and compared classical batch with streaming mode. Though, in batch mode, LSTMs generally achieve the best performance, there is often an n-gram whose accuracy comes very close. Combining basic models in ensemble methods can even outperform LSTMs. The value of basic models with respect to LSTMs becomes even more apparent in streaming mode, where LSTMs generally lack accuracy in the early stages of a prediction run, while basic methods make sensible predictions immediately.
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cs.LG 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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Extending AALpy with Passive Learning: A Generalized State-Merging Approach
A generalized red-blue state-merging framework is added to AALpy, enabling passive learning of multiple IO automaton types with plug-in compatibility and scoring functions.