Authors / CoAuthors
Li, J. | Heap, A.
Abstract
Spatial interpolation methods have been applied to many disciplines. Many factors affect the performance of the methods, but there are no consistent findings about their effects. In this study, we focus mainly on comparative studies in environmental sciences to assess the performance of spatial interpolation methods and to quantify the impacts of data properties on the performance. Two new measures are proposed to compare the performance of the methods applied to multiple variables with different units/scales. A total of 53 comparative studies were assessed and the performance of 61 methods/sub-methods compared in these studies is analysed. The impacts of sample density, data variation, and sampling design on the estimations of 32 methods are quantified using data derived from their application to 80 variables. Inverse distance weighting (IDW), ordinary kriging (OK), and ordinary co-kriging (OCK) are the most frequently used methods. Data variation is a dominant factor and has significant impacts on the performance of the methods. As the variation increases, the accuracy of all methods decreases and the magnitude of decrease is method dependent. Gradient plus inverse distance squared (GIDS), OCK and regression residual kriging (RK-C) are less sensitive to data variation. Irregular-spaced sampling design might improve the accuracy of estimation. The effect of sampling density on the performance of the methods is found not to be significant. The implications of these findings are discussed.
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nonGeographicDataset
eCat Id
68918
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- External Publication
- Australian and New Zealand Standard Research Classification (ANZSRC)
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- Earth Sciences
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- Published_Internal
Publication Date
2009-05-01T00:00:00
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geoscientificInformation
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Spatial Resolution
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