ct索引:结合循环和树的基于指纹的图形索引

K. Klein, Nils M. Kriege, Petra Mutzel
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引用次数: 47

摘要

在许多应用领域,在大型数据库中高效的子图查询是一项时间紧迫的任务,例如生物学或化学,其中生物网络或化合物被建模为图。子图同构问题的np完备性使得对每个数据库图进行精确的子图测试是不可行的。因此,必须找到有效的方法,避免大多数这些测试,但仍然允许识别包含查询模式的所有图。我们提出了一种基于过滤器-验证范式的新方法,使用一种结合树和循环特征的新的哈希键指纹技术进行过滤,并使用一种新的子图同构测试进行验证。我们的方法能够处理边缘和顶点标签,也允许使用通配符模式进行搜索。我们将我们的方法与最先进的方法进行了实验比较,使用真实世界和生成的图形实例的基准集来显示其实用性。我们的方法作为Scaffold Hunter软件的一部分实现,该软件是一种用于化学化合物数据库可视化分析的工具。
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CT-index: Fingerprint-based graph indexing combining cycles and trees
Efficient subgraph queries in large databases are a time-critical task in many application areas as e.g. biology or chemistry, where biological networks or chemical compounds are modeled as graphs. The NP-completeness of the underlying subgraph isomorphism problem renders an exact subgraph test for each database graph infeasible. Therefore efficient methods have to be found that avoid most of these tests but still allow to identify all graphs containing the query pattern. We propose a new approach based on the filter-verification paradigm, using a new hash-key fingerprint technique with a combination of tree and cycle features for filtering and a new subgraph isomorphism test for verification. Our approach is able to cope with edge and vertex labels and also allows to use wild card patterns for the search. We present an experimental comparison of our approach with state-of-the-art methods using a benchmark set of both real world and generated graph instances that shows its practicability. Our approach is implemented as part of the Scaffold Hunter software, a tool for the visual analysis of chemical compound databases.
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