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Conformance Checking Approximation Using Subset Selection and Edit Distance

机译:使用子集选择和编辑距离进行一致性检查近似

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Conformance checking techniques let us find out to what degree a process model and real execution data correspond to each other. In recent years, alignments have proven extremely useful in calculating conformance statistics. Most techniques to compute alignments provide an exact solution. However, in many applications, it is enough to have an approximation of the conformance value. Specifically, for large event data, the computation time for alignments is considerably long using current techniques which makes them inapplicable in reality. Also, it is no longer feasible to use standard hardware for complex process models. This paper, proposes new approximation techniques to compute approximated conformance checking values close to exact solution values in less time. These methods also provide upper and lower bounds for the approximated alignment value. Our experiments on real event data show that it is possible to improve the performance of conformance checking by using the proposed methods compared to using the state-of-the-art alignment approximation technique. Results show that in most of the cases, we provide tight bounds, accurate approximated alignment values, and similar deviation statistics.
机译:一致性检查技术使我们能够找出流程模型和实际执行数据在多大程度上相互对应。近年来,比对已被证明在计算一致性统计数据中非常有用。大多数计算路线的技术都提供了精确的解决方案。但是,在许多应用中,具有近似值就足够了。具体来说,对于大事件数据,使用当前技术进行比对的计算时间相当长,这使得它们实际上不适用。而且,将标准硬件用于复杂的过程模型不再可行。本文提出了一种新的近似技术,可以在更短的时间内计算出接近精确解值的近似一致性检查值。这些方法还提供了近似对齐值的上限和下限。我们对真实事件数据的实验表明,与使用最新的比对近似技术相比,通过使用所提出的方法可以提高一致性检查的性能。结果表明,在大多数情况下,我们提供了严格的界限,准确的近似比对值和相似的偏差统计信息。

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