Methoden vergleichen
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| Raum-Zeit-Ordinary-Kriging× | Space-Time Universal Kriging× | |
|---|---|---|
| Fachgebiet | Räumliche Analyse | Räumliche Analyse |
| Familie | Regression model | Regression model |
| Entstehungsjahr | 1999 | 1999 |
| Urheber≠ | Kyriakidis & Journel (seminal review); Cressie & Huang (covariance models) | Kyriakidis & Journel (1999); foundations in Matheron's geostatistics |
| Typ≠ | Geostatistical interpolation | Spatiotemporal geostatistical interpolation |
| Wegweisende Quelle | Kyriakidis, P. C., & Journel, A. G. (1999). Geostatistical space-time models: a review. Mathematical Geology, 31(6), 651-684. DOI ↗ | Kyriakidis, P. C., & Journel, A. G. (1999). Geostatistical space-time models: A review. Mathematical Geology, 31(6), 651-684. DOI ↗ |
| Aliasnamen | STOK, spatio-temporal ordinary kriging, ordinary space-time kriging, ST-OK | STUK, spatiotemporal universal kriging, space-time kriging with trend, universal kriging in space-time |
| Verwandt≠ | 4 | 5 |
| Zusammenfassung≠ | Space-Time Ordinary Kriging (STOK) is a geostatistical interpolation method that predicts a spatially and temporally varying phenomenon at unsampled space-time locations by combining the ordinary kriging assumption of an unknown, locally constant mean with a joint space-time covariance (or variogram) structure. It produces optimal, unbiased predictions along with associated estimation uncertainty. | Space-Time Universal Kriging (STUK) is a geostatistical method that interpolates a continuously varying phenomenon across both space and time while explicitly modelling a deterministic trend component. It generalises Universal Kriging to the joint space-time domain, producing unbiased optimal predictions and associated uncertainty estimates at unobserved space-time locations. |
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