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引用次数: 72

摘要

图数据出现在各种应用程序领域中,对它的许多使用,如查询、匹配和转换数据,自然会导致不完全指定的图数据,即图模式。虽然需要对这些数据进行查询,但通常缺乏查询模式的技术,而且对这些查询的属性也没有很好的理解。我们的目标是学习查询图形模式的基础知识。我们首先识别模式的关键特征,如节点和标签变量以及正则表达式指定的边,并基于它们定义模式分类。然后,我们研究了图模式上的标准图查询,并给出了每一类模式的数据和组合复杂性的精确特征。如果复杂性很高,我们将进一步分析导致难以处理的特性,以及较低的复杂性限制。我们引入了一种新的查询应答自动机模型,该模型具有两种接受模式:一种捕获查询返回节点,另一种捕获查询返回路径。我们研究这类自动机的性质,以及与之相关的关键计算任务。最后,我们对可跟踪性提供了额外的限制,并表明一些棘手的情况可以很自然地转化为约束满足问题的实例。
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Querying graph patterns
Graph data appears in a variety of application domains, and many uses of it, such as querying, matching, and transforming data, naturally result in incompletely specified graph data, i.e., graph patterns. While queries need to be posed against such data, techniques for querying patterns are generally lacking, and properties of such queries are not well understood. Our goal is to study the basics of querying graph patterns. We first identify key features of patterns, such as node and label variables and edges specified by regular expressions, and define a classification of patterns based on them. We then study standard graph queries on graph patterns, and give precise characterizations of both data and combined complexity for each class of patterns. If complexity is high, we do further analysis of features that lead to intractability, as well as lower complexity restrictions. We introduce a new automata model for query answering with two modes of acceptance: one captures queries returning nodes, and the other queries returning paths. We study properties of such automata, and the key computational tasks associated with them. Finally, we provide additional restrictions for tractability, and show that some intractable cases can be naturally cast as instances of constraint satisfaction problem.
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4.40
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0.00%
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