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The smallest valid extension-based efficient, rare graph pattern mining, considering length-decreasing support constraints and symmetry characteristics of graphs - MaRDI portal

The smallest valid extension-based efficient, rare graph pattern mining, considering length-decreasing support constraints and symmetry characteristics of graphs (Q2412349)

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The smallest valid extension-based efficient, rare graph pattern mining, considering length-decreasing support constraints and symmetry characteristics of graphs
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    The smallest valid extension-based efficient, rare graph pattern mining, considering length-decreasing support constraints and symmetry characteristics of graphs (English)
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    23 October 2017
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    Summary: Frequent graph mining has been proposed to find interesting patterns (i.e., frequent sub-graphs) from databases composed of graph transaction data, which can effectively express complex and large data in the real world. In addition, various applications for graph mining have been suggested. Traditional graph pattern mining methods use a single minimum support threshold factor in order to check whether or not mined patterns are interesting. However, it is not a sufficient factor that can consider valuable characteristics of graphs such as graph sizes and features of graph elements. That is, previous methods cannot consider such important characteristics in their mining operations since they only use a fixed minimum support threshold in the mining process. For this reason, in this paper, we propose a novel graph mining algorithm that can consider various multiple, minimum support constraints according to the types of graph elements and changeable minimum support conditions, depending on lengths of graph patterns. In addition, the proposed algorithm performs in mining operations more efficiently because it can minimize duplicated operations and computational overheads by considering symmetry features of graphs. Experimental results provided in this paper demonstrate that the proposed algorithm outperforms previous mining approaches in terms of pattern generation, runtime and memory usage.
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    data mining
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    graph mining
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    graph symmetry
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    length-decreasing support
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    rare item problem
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