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Probabilistic DL Reasoning with Pinpointing Formulas: A Prolog-based Approach

机译:概率与精确公式的概率DL推理:基于Prolog的方法

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When modeling real-world domains, we have to deal with information that is incomplete or that comes from sources with different trust levels. This motivates the need for managing uncertainty in the Semantic Web. To this purpose, we introduced a probabilistic semantics, named DISPONTE, in order to combine description logics (DLs) with probability theory. The probability of a query can be then computed from the set of its explanations by building a Binary Decision Diagram (BDD). The set of explanations can be found using the tableau algorithm, which has to handle non-determinism. Prolog, with its efficient handling of non-determinism, is suitable for implementing the tableau algorithm. TRILL and TRILLP are systems offering a Prolog implementation of the tableau algorithm. TRILLP builds a pinpointing formula that compactly represents the set of explanations and can be directly translated into a BDD. Both reasoners were shown to outperform state-othe-art DL reasoners. In this paper, we present an improvement of TRILLP, named TORNADO, in which the BDD is directly built during the construction of the tableau, further speeding up the overall inference process. An experimental comparison shows the effectiveness of TORNADO. All systems can be tried online in the TRILL on SWISH web application at http://trill.ml.unife. it/.
机译:在建模现实世界域时,我们必须处理不完整的信息,或者来自具有不同信任级别的来源。这激励了对语义Web中管理不确定性的需求。为此目的,我们介绍了一个名为Disonte的概率语义,以便将描述逻辑(DLS)与概率理论结合起来。然后可以通过构建二进制决策图(BDD)从其解释的集合计算查询的概率。可以使用Tableau算法找到的解释集,该算法必须处理非确定性。 Prolog是其有效处理非确定性,适用于实现Tableau算法。 Trill和Trillp是提供Tableau算法的Prolog实现的系统。 trillp构建一个精确的公式,即紧凑地代表了一组解释,可以直接翻译成BDD。这两个推理师都被证明以优于州 - 奥尔艺术DL推理师。在本文中,我们提出了一个改进Trillp,名为Tornado的Trillp,其中BDD在施工期间直接建造,进一步加快了整体推理过程。实验比较显示了龙卷风的有效性。所有系统都可以在Http://trill.ml.unife的慢跑网上应用程序中在线试验。它/。

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