Positional error in automated geocoding of residential addresses

被引:180
作者
Michael R Cayo
Thomas O Talbot
机构
[1] Geographic Res. and Analysis Section, Bureau of Environ./Occup. Epidemiol., New York State Dept. of Health, Troy, NY 12180-2216
关键词
Census Tract; Street Segment; True Location; Positional Error; Match Rate;
D O I
10.1186/1476-072X-2-10
中图分类号
学科分类号
摘要
Background: Public health applications using geographic information system (GIS) technology are steadily increasing. Many of these rely on the ability to locate where people live with respect to areas of exposure from environmental contaminants. Automated geocoding is a method used to assign geographic coordinates to an individual based on their street address. This method often relies on street centerline files as a geographic reference. Such a process introduces positional error in the geocoded point. Our study evaluated the positional error caused during automated geocoding of residential addresses and how this error varies between population densities. We also evaluated an alternative method of geocoding using residential property parcel data. Results: Positional error was determined for 3,000 residential addresses using the distance between each geocoded point and its true location as determined with aerial imagery. Error was found to increase as population density decreased. In rural areas of an upstate New York study area, 95 percent of the addresses geocoded to within 2,872 m of their true location. Suburban areas revealed less error where 95 percent of the addresses geocoded to within 421 m. Urban areas demonstrated the least error where 95 percent of the addresses geocoded to within 152 m of their true location. As an alternative to using street centerline files for geocoding, we used residential property parcel points to locate the addresses. In the rural areas, 95 percent of the parcel points were within 195 m of the true location. In suburban areas, this distance was 39 m while in urban areas 95 percent of the parcel points were within 21 m of the true location. Conclusion: Researchers need to determine if the level of error caused by a chosen method of geocoding may affect the results of their project. As an alternative method, property data can be used for geocoding addresses if the error caused by traditional methods is found to be unacceptable. © 2003 Cayo and Talbot; licensee BioMed Central Ltd.
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页数:12
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共 36 条
[1]  
Geschwind S.A., Stolwijk J.A.J., Bracken M., Fitzgerald E., Stark A., Olsen C., Melius J., Risk of congenital malformations associated with proximity to hazardous waste sites, Am. J. Epidemiol., 135, pp. 1197-1207, (1992)
[2]  
English P., Neutra R., Scalf R., Sullivan M., Waller L., Zhu L., Examining associations between childhood asthma and traffic flow using a geographic information system, Environ. Health Perspect., 107, pp. 761-767, (1999)
[3]  
Lewis-Michl E.L., Melius J.M., Kallenbach L.R., Ju C.L., Talbot T.O., Orr M.F., Lauridsen P.E., Breast cancer risk and residence near industry or traffic in Nassau and Suffolk Counties, Long Island, New York, Arch. Environ. Health, 51, pp. 255-265, (1996)
[4]  
Reynolds P., Von Behren J.V., Gunier R.B., Goldberg D.E., Hertz A., Smith D.F., Childhood cancer incidence rates and hazardous air pollutants in California: An exploratory analysis, Environ. Health Perspect., 111, pp. 663-668, (2003)
[5]  
Kitto M.E., Kunz C.O., Green J.G., Development and distribution of radon risk maps in New York State, J. Radioanal. Nucl. Chem., 249, pp. 153-157, (2001)
[6]  
Rushton G., Lolonis P., Exploratory spatial analysis of birth defect rates in an urban population, Stat. Med., 15, pp. 717-726, (1996)
[7]  
Talbot T.O., Kulldorff M., Forand S.P., Haley V.B., Evaluation of spatial filters to create smoothed maps of health data, Stat. Med., 19, pp. 2399-2408, (2000)
[8]  
Anselin L., Local indicators of spatial association - LISA, Geogr. Anal., 27, pp. 93-115, (1995)
[9]  
Kulldorff M., Nagarwalla N., Spatial disease clusters: Detection and inference, Stat. Med., 14, pp. 799-810, (1995)
[10]  
Burra T., Jerrett M., Burnett R.T., Anderson M., Conceptual and practical issues in the detection of local disease clusters: A study of mortality in Hamilton, Ontario, Can. Geogr., 46, pp. 160-171, (2002)