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Methods for interpolating missing data in aerobiological databases

delete2021-09-01
delete25
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OA
AI
A
Antonio Picornell *
J
José Oteros
R
Rocío Ruiz-Mata
M
Marta Recio
M
M.M. Trigo
M
Moisés Martínez‐Bracero
B
Beatriz Lara
C
Carmen Galán
H
Herminia Garcı́a-Mozo
P
Purificación Alcázar
R
Rosa Pérez-Badía
B
Baltasar Cabezudo
J
Jorge Romero-Morte
J
Jesús Rojo
DOI:10.1016/j.envres.2021.111391delete
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Abstract

Abstract

En 中文
Missing data is a common problem in scientific research. The availability of extensive environmental time series is usually laborious and difficult, and sometimes unexpected failures are not detected until samples are processed. Consequently, environmental databases frequently have some gaps with missing data in it. Applying an interpolation method before starting the data analysis can be a good solution in order to complete this missing information. Nevertheless, there are several different approaches whose accuracy should be considered and compared. In this study, data from 6 aerobiological sampling stations were used as an example of environmental data series to assess the accuracy of different interpolation methods. For that, observed daily pollen/spore concentration data series were randomly removed, interpolated by using different methods and then, compared with the observed data to measure the errors produced. Different periods, gap sizes, interpolation methods and bioaerosols were considered in order to check their influence in the interpolation accuracy. The moving mean interpolation method obtained the highest success rate as average. By using this method, a success rate of the 70% was obtained when the risk classes used in the alert systems of the pollen information platforms were taken into account. In general, errors were mostly greater when there were high oscillations in the concentrations of biotic particles during consecutive days. That is the reason why the pre-peak and peak periods showed the highest interpolation errors. The errors were also higher when gaps longer than 5 days were considered. So, for completing long periods of missing data, it would be advisable to test other methodological approaches. A new Variation Index based on the behaviour of the pollen/spore season (measurement of the variability of the concentrations every 2 consecutive days) was elaborated, which allows to estimate the potential error before the interpolation is applied.
Keywords:
Missing data
Aerobiology
Time-series
Modelling
Interpolation
Environmental sampling
Bioaerosols
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Journal

Environmental Research cover
Environmental Research
IF:
7.7
Papers:
2.0W
Citations:
9.0W

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C
Complutense University of Madrid
Scholars:
2.6W
Papers: 2.2W
Citations: 31
U
universidad de malaga
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1.2W
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U
universidad de cordoba
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1.0W
Papers: 8.4K
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