Please use this identifier to cite or link to this item: http://repository.kln.ac.lk/handle/123456789/135
Title: Homogenization of Daily Temperature Data
Authors: Hewaarachchi, A.P.
Li, Yingbo
Lund, Robert
Rennie, Jared
Issue Date: 2017
Publisher: American Meteorological Society
Citation: Hewaarachchi, Anuradha P., Li, Yingbo, Lund, Robert and Rennie, Jared 2017. Homogenization of Daily Temperature Data. Journal of Climate 30(3): 985-999.
Abstract: This paper develops a method for homogenizing daily temperature series. While daily temperatures are statistically more complex than annual or monthly temperatures, techniques and computational methods have been accumulating that can now model and analyze all salient statistical characteristics of daily temperature series. The goal here is to combine these techniques in an efficient manner for multiple changepoint identification in daily series; computational speed is critical as a century of daily data has over 36 500 data points. The method developed here takes into account 1) metadata, 2) reference series, 3) seasonal cycles, and 4) autocorrelation. Autocorrelation is especially important: ignoring it can degrade changepoint techniques, and sample autocorrelations of day-to-day temperature anomalies are often as large as 0.7. While daily homogenization is not conducted as commonly as monthly or annual homogenization, daily analyses provide greater detection precision as they are roughly 30 times as long as monthly records. For example, it is relatively easy to detect two changepoints less than two years apart with daily data, but virtually impossible to flag these in corresponding annually averaged data. The developed methods are shown to work in simulation studies and applied in the analysis of 46 years of daily temperatures from South Haven, Michigan.
URI: http://repository.kln.ac.lk/handle/123456789/135
Appears in Collections:Statistics & Computer Science

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