An Efficient Implementation of Equivalence Relations in OWL via Rule and Query Rewriting

Hans-Ulrich Krieger
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引用次数: 20

Abstract

This paper presents an implementation of the three equivalence relations in the language specification of OWL. The approach described here has been realized in the forward chaining engine HFC that we have developed over the last years and that is comparable to popular engines, such as OWLIM or Jena. The proposed technique obviates the combinatorial explosion attributed to equivalence relations in a semantic repository during materialization, when applying the OWL entailment rules from ter Horst (2005) or when using one's own custom rules. Although the approach requires a little work when (i) starting up a repository (cleaning up data, rewriting rules) and (ii) querying its content (replacing individuals by their proxies, and vice versa), it pays off in the end as our measurements have proven by showing a smaller memory footprint and allowing faster inferences than the standard brute-force approach which multiplies out everything.
基于规则和查询重写的OWL中等价关系的有效实现
本文给出了OWL语言规范中三个等价关系的实现。这里描述的方法已经在我们过去几年开发的前向链引擎HFC中实现,它可以与流行的引擎(如OWLIM或Jena)相媲美。在物化过程中,当应用ter Horst(2005)的OWL蕴涵规则或使用自己的自定义规则时,所提出的技术避免了由语义存储库中的等价关系引起的组合爆炸。尽管该方法在(i)启动存储库(清理数据、重写规则)和(ii)查询其内容(用代理替换个体,反之亦然)时需要做一些工作,但它最终还是值得的,因为我们的测量已经证明,它显示出更小的内存占用,并且比标准的暴力方法更快地进行推理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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