The COST (European Cooperation in Science and Technology) Action ES0601: Advances in homogenization methods of climate series: an integrated approach (HOME) has executed a blind intercomparison and validation study for monthly homogenization algorithms. Time series of monthly temperature and precipitation were evaluated because of their importance for climate studies. The algorithms were validated against a realistic benchmark dataset. Participants provided 25 separate homogenized contributions as part of the blind study as well as 22 additional solutions submitted after the details of the imposed inhomogeneities were revealed. These homogenized datasets were assessed by a number of performance metrics including i) the centered root mean square error relative to the true homogeneous values at various averaging scales, ii) the error in linear trend estimates and iii) traditional contingency skill scores. The metrics were computed both using the individual station series as well as the network average regional series. The performance of the contributions depends significantly on the error metric considered. Although relative homogenization algorithms typically improve the homogeneity of temperature data, only the best ones improve precipitation data. Moreover, state-of-the-art relative homogenization algorithms developed to work with an inhomogeneous reference are shown to perform best. The study showed that currently automatic algorithms can perform as well as manual ones.
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11 September 2013
TEMPERATURE: ITS MEASUREMENT AND CONTROL IN SCIENCE AND INDUSTRY, VOLUME 8: Proceedings of the Ninth International Temperature Symposium
19–23 March 2012
Los Angeles, California
Research Article|
September 11 2013
Benchmarking homogenization algorithms for monthly data Available to Purchase
V. K. C. Venema;
V. K. C. Venema
Meteorological institute of the University of Bonn,
Germany
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O. Mestre;
O. Mestre
Meteo France, Ecole Nationale de la Meteorologie, Toulouse,
France
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E. Aguilar;
E. Aguilar
Center on Climate Change (C3), Universitat Rovira i Virgili, Tarragona,
Spain
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I. Auer;
I. Auer
Zentralanstalt für Meteorologie und Geodynamik, Wien,
Austria
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J. A. Guijarro;
J. A. Guijarro
Agencia Estatal de Meteorologia, Palma de Mallorca,
Spain
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P. Domonkos;
P. Domonkos
Center on Climate Change (C3), Universitat Rovira i Virgili, Tarragona,
Spain
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G. Vertacnik;
G. Vertacnik
Slovenian Environment Agency, Ljubljana,
Slovenia
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T. Szentimrey;
T. Szentimrey
Hungarian Meteorological Service, Budapest,
Hungary
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P. Stepanek;
P. Stepanek
Czech Hydrometeorological Institute, Brno, Czech Republic and Global Change Research Centre AS CR, v.v.i., Brno,
Czech Republic
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P. Zahradnicek;
P. Zahradnicek
Czech Hydrometeorological Institute, Brno, Czech Republic and Global Change Research Centre AS CR, v.v.i., Brno,
Czech Republic
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J. Viarre;
J. Viarre
Center on Climate Change (C3), Universitat Rovira i Virgili, Tarragona,
Spain
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G. Müller-Westermeier;
G. Müller-Westermeier
Deutscher Wetterdienst, Offenbach,
Germany
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M. Lakatos;
M. Lakatos
Hungarian Meteorological Service, Budapest,
Hungary
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C. N. Williams;
C. N. Williams
NOAA/National Climatic Data Center,
USA
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M. J. Menne;
M. J. Menne
NOAA/National Climatic Data Center,
USA
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R. Lindau;
R. Lindau
Meteorological institute of the University of Bonn,
Germany
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D. Rasol;
D. Rasol
Meteorological and hydrological service, Zagreb,
Croatia
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E. Rustemeier;
E. Rustemeier
Meteorological institute of the University of Bonn,
Germany
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K. Kolokythas;
K. Kolokythas
Laboratory of Atmospheric Physics, University of Patras,
Greece
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T. Marinova;
T. Marinova
National Institute of Meteorology and Hydrology -- BAS, Sofia,
Bulgaria
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L. Andresen;
L. Andresen
Norwegian Meteorological Institute, Oslo,
Norway
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F. Acquaotta;
F. Acquaotta
Department of Earth Science, University of Turin,
Italy
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S. Fratiannil;
S. Fratiannil
Agencia Estatal de Meteorologia, Palma de Mallorca,
Spain
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S. Cheval;
S. Cheval
National Meteorological Administration, Bucharest, Romania and National Institute for R&D in Environmental Protection, Bucharest,
Romania
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M. Klancar;
M. Klancar
Slovenian Environment Agency, Ljubljana,
Slovenia
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M. Brunetti;
M. Brunetti
Institute of Atmospheric Sciences and Climate (ISAC-CNR), Bologna,
Italy
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C. Gruber;
C. Gruber
Zentralanstalt für Meteorologie und Geodynamik, Wien,
Austria
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M. Prohom Duran;
M. Prohom Duran
Grup de Climatologia, Universitat de Barcelona, Spain and Meteorological Service of Catalonia, Area of Climatology, Barcelona, Catalonia,
Spain
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T. Likso;
T. Likso
Meteorological and hydrological service, Zagreb,
Croatia
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P. Esteban;
P. Esteban
Centre d'Estudis de la Neu i de la Muntanya d'Andorra (CENMA-IEA) Andorra and Grup de Climatologia, Universitat de Barcelona,
Spain
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T. Brandsma;
T. Brandsma
Royal Netherlands Meteorological Institute, De Bilt,
Netherlands
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K. Willett
K. Willett
Met Office Hadley Centre, Exeter,
United Kingdom
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V. K. C. Venema
O. Mestre
E. Aguilar
I. Auer
J. A. Guijarro
P. Domonkos
G. Vertacnik
T. Szentimrey
P. Stepanek
P. Zahradnicek
J. Viarre
G. Müller-Westermeier
M. Lakatos
C. N. Williams
M. J. Menne
R. Lindau
D. Rasol
E. Rustemeier
K. Kolokythas
T. Marinova
L. Andresen
F. Acquaotta
S. Fratiannil
S. Cheval
M. Klancar
M. Brunetti
C. Gruber
M. Prohom Duran
T. Likso
P. Esteban
T. Brandsma
K. Willett
Meteorological institute of the University of Bonn,
Germany
AIP Conf. Proc. 1552, 1060–1065 (2013)
Citation
V. K. C. Venema, O. Mestre, E. Aguilar, I. Auer, J. A. Guijarro, P. Domonkos, G. Vertacnik, T. Szentimrey, P. Stepanek, P. Zahradnicek, J. Viarre, G. Müller-Westermeier, M. Lakatos, C. N. Williams, M. J. Menne, R. Lindau, D. Rasol, E. Rustemeier, K. Kolokythas, T. Marinova, L. Andresen, F. Acquaotta, S. Fratiannil, S. Cheval, M. Klancar, M. Brunetti, C. Gruber, M. Prohom Duran, T. Likso, P. Esteban, T. Brandsma, K. Willett; Benchmarking homogenization algorithms for monthly data. AIP Conf. Proc. 11 September 2013; 1552 (1): 1060–1065. https://doi.org/10.1063/1.4819690
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