On Detecting Spatial Outliers

被引:0
作者
Dechang Chen
Chang-Tien Lu
Yufeng Kou
Feng Chen
机构
[1] Uniformed Services University of the Health Sciences,Department of Preventive Medicine and Biometrics
[2] Virginia Polytechnic Institute and State University,Department of Computer Science
来源
GeoInformatica | 2008年 / 12卷
关键词
algorithm; outlier detection; spatial data mining;
D O I
暂无
中图分类号
学科分类号
摘要
The ever-increasing volume of spatial data has greatly challenged our ability to extract useful but implicit knowledge from them. As an important branch of spatial data mining, spatial outlier detection aims to discover the objects whose non-spatial attribute values are significantly different from the values of their spatial neighbors. These objects, called spatial outliers, may reveal important phenomena in a number of applications including traffic control, satellite image analysis, weather forecast, and medical diagnosis. Most of the existing spatial outlier detection algorithms mainly focus on identifying single attribute outliers and could potentially misclassify normal objects as outliers when their neighborhoods contain real spatial outliers with very large or small attribute values. In addition, many spatial applications contain multiple non-spatial attributes which should be processed altogether to identify outliers. To address these two issues, we formulate the spatial outlier detection problem in a general way, design two robust detection algorithms, one for single attribute and the other for multiple attributes, and analyze their computational complexities. Experiments were conducted on a real-world data set, West Nile virus data, to validate the effectiveness of the proposed algorithms.
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页码:455 / 475
页数:20
相关论文
共 48 条
[1]  
Cerioli A.(June 1999)The ordering of spatial data and the detection of multiple outliers Journal of Computational and Graphical Statistics 8 239-258
[2]  
Riani M.(1999)Distributed data mining in credit card fraud detection IEEE Intelligent Systems 14 67-74
[3]  
Chan P.K.(2002)Diagnosing shocks in stock markets of Southeast Asia, Australia, and New Zealand Mathematics and Computers in Simulation 59 223-232
[4]  
Fan W.(1998)Statistics Norton 41 212-223
[5]  
Prodromidis A.L.(2005)The distribution of robust distances Journal of Computational and Graphical Statistics 14 1-19
[6]  
Stolfo S.J.(1991)Dynamic graphics for exploring spatial data with application to locating global and local anomalies The American Statistician 45 234-242
[7]  
Chan W.S.(2001)Detecting outliers in irregularly distributed spatial data sets by locally adaptive and robust statistical analysis and gis International Journal of Geographical Information Science 15 721-741
[8]  
Liu W.N.(1995)Local indicators of spatial association: Lisa Geographical Analysis 27 93-115
[9]  
Freedman D.(1973)Time bounds for selection Journal of Computer and System Sciences 7 448-461
[10]  
Pisani R.(1995)Shrinkage parameter for the modified linear discriminant analysis Pattern Recognition Letters 16 267-275