Approaches for Scaling DBSCAN Algorithm to Large Spatial Databases
周傲英, 周水庚, 曹晶, 范晔, 胡运发 · 2000
The huge amount of information stored in datablases owned by coporations(e.g.retail,financial,telecom) has spurred a tremendous interest in the area of knowledge discovery and data mining.Clustering.in data mining,is a useful technique for discovering intersting data distributions and patterns in the underlying data,and has many application fields,such as statistical data analysis,pattern recognition,image processsing,and other business application,s Although researchers have been working on clustering algorithms for decades,and a lot of algorithms for clustering have been developed,there is still no efficient algorithm for clustering very large databases and high dimensional data,As an outstanding representative of clustering algorithms,DBSCAN algorithm shows good performance in spatial data clustering.However,for large spatial databases,DBSCAN requires large volume of memory supprot and could incur substatial I/O costs because it operates directly on the entrie database,In this paper,several approaches are proposed to scale DBSCAN algorithm to large spatial databases.To begin with,a fast DBSCAN algorithm is developed.which considerably speeeds up the original DBSCAN algorithm,Then a sampling based DBSCAN algorithm,a partitioning-based DBSCAN algorithm,and a parallel DBSCAN algorithm are introduced consecutively.Following that ,based on the above-proposed algorithms,a synthetic algorithm is also given,Finally,some experimental results are given to demonstrate the effectiveness and efficiency of these algorithms.