Model-based small area estimation at two scales using Moran's spatial filtering

DOI

In spatial epidemiology and public health studies, including covariates in small area estimation of spatial binary data remains a challenge. In this paper, Moran's spatial filtering is proposed to model two-scale spatial binary data. Two models are developed: the first uses deterministic estimation of the sample size at small areal level; the second generates a random sample size using the multinomial distribution. The models were applied to estimate the underweight among children at Vietnamese district level using sampling survey data at provincial level. The results show that the first model outperformed the second model regarding its accuracy and simplicity. Eigenvector maps improve model parameter estimation, and allow for the effects of spatial spillover and covariates. Prediction at the district level indicates that many underweight children came from the mountainous areas in 2014. The study concludes that the proposed models serve as alternatives to small area estimation of spatial binary data.

Valid: 2014

Truong, P. N., & Stein, A. (Accepted/In press). Model-based small area estimation at two scales using Moran's spatial filtering. Spatial and Spatio-temporalEpidemiology, [100303]. https://doi.org/10.1016/j.sste.2019.100303

Identifier
DOI https://doi.org/10.17026/dans-z63-u9kw
Metadata Access https://lifesciences.datastations.nl/oai?verb=GetRecord&metadataPrefix=oai_datacite&identifier=doi:10.17026/dans-z63-u9kw
Provenance
Creator NP NP Truong
Publisher DANS Data Station Life Sciences
Contributor M Th Koelen
Publication Year 2019
Rights DANS Licence; info:eu-repo/semantics/restrictedAccess; https://doi.org/10.17026/fp39-0x58
OpenAccess false
Contact M Th Koelen (Faculty of Geo-Information Science and Earth Observation)
Representation
Resource Type Dataset
Format application/zip; text/plain; application/octet-stream; application/dbf; application/prj; application/sbn; application/sbx; application/shp; text/xml; application/shx; image/tiff
Size 21531; 1644; 5; 16793; 402; 796; 188; 5938232; 1996; 604; 2109; 3629579
Version 1.0
Discipline Life Sciences; Medicine