Title :
Scaling Hop-Based Reachability Indexing for Fast Graph Pattern Query Processing
Author :
Ronghua Liang ; Hai Zhuge ; Xiaorui Jiang ; Qiang Zeng ; Xiaofei He
Author_Institution :
Coll. of Inf. Eng., Zhejiang Univ. of Technol., Hangzhou, China
Abstract :
Graphs are becoming increasingly dominant in modeling real-life networked data including social and biological networks, the WWW and the Semantic Web, etc. Graph pattern queries are useful for gathering information with expressive semantics from these graph-structured data. Current methods for graph pattern query processing have performance deficiency caused by inefficiencies of the underlying reachability index and costly merge-join operations on huge amounts of tuple-formatted intermediate results. To overcome the above problems, this paper contributes in the following aspects to boost graph pattern query evaluation. First, we propose an improved hop-based reachability indexing scheme 3-Hop which gains faster reachability query evaluation, less indexing costs and better scalabilities than state-of-the-art hop-based methods. Second, we propose a two-stage node filtering algorithm based on 3-Hop to answer tree pattern queries more efficiently. Tree pattern queries serve as the underlying facility for graph pattern query evaluation. Furthermore, we use a graph representation of the intermediate results during node filtering and final results enumeration. Experiments on real-life and synthetic datasets demonstrate the effectiveness of the proposed methods.
Keywords :
graph theory; indexing; information filtering; query processing; semantic Web; WWW; biological networks; fast graph pattern query processing; graph pattern query evaluation; graph representation; graph-structured data; hop-based reachability indexing scaling; hop-based reachability indexing scheme; merge-join operations; node filtering; performance deficiency; reachability index; real-life networked data; semantic Web; social networks; tree pattern queries; tuple-formatted intermediate results; two-stage node filtering algorithm; Filtering; Indexing; Labeling; Pattern matching; Query processing; Solids; 3-Hop* labeling; Graph pattern query processing; reachability indexing; two-stage node filtering;
Journal_Title :
Knowledge and Data Engineering, IEEE Transactions on
DOI :
10.1109/TKDE.2014.2310207