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Incremental Frequent Subgraph Mining on Large Evolving Graphs

delete2017-12-01
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OA
AI
E
Ehab Abdelhamid *
M
Mohammad Sadoghi
B
Bishwaranjan Bhattacharjee
Y
Yuan‐Chi Chang
P
Panos Kalnis
DOI:10.1109/TKDE.2017.2743075delete
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Abstract

Abstract

En 中文
Frequent subgraph mining is a core graph operation used in many domains, such as graph data management and knowledge exploration, bioinformatics, and security. Most existing techniques target static graphs. However, modern applications, such as social networks, utilize large evolving graphs. Mining these graphs using existing techniques is infeasible, due to the high computational cost. In this paper, we propose IncGM+, a fast incremental approach for continuous frequent subgraph mining on a single large evolving graph. We adapt the notion of fringe to the graph context, that is the set of subgraphs on the border between frequent and infrequent subgraphs. IncGM+ maintains fringe subgraphs and exploits them to prune the search space. To boost the efficiency, we propose an efficient index structure to maintain selected embeddings with minimal memory overhead. These embeddings are utilized to avoid redundant expensive subgraph isomorphism operations. Moreover, the proposed system supports batch updates. Using large real-world graphs, we experimentally verify that IncGM+ outperforms existing methods by up to three orders of magnitude, scales to much larger graphs and consumes less memory.
Keywords:
Graph algorithms
data mining
indexing
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IEEE Transactions on Knowledge and Data Engineering cover
IEEE Transactions on Knowledge and Data Engineering
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10.4
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Citations:
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king abdullah university of science & technology
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University of California System cover
University of California System
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international business machines (ibm)
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