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cc-by-nc-nd, (c) Clavería et al., 2015
Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/61328

Effects of removing the trend and the seasonal component on the forecasting performance of artificial neural network techniques

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Abstract

This study aims to analyze the effects of data pre-processing on the performance of forecasting based on neural network models. We use three different Artificial Neural Networks techniques to forecast tourist demand: a multi-layer perceptron, a radial basis function and an Elman neural network. The structure of the networks is based on a multiple-input multiple-output setting (i.e. all countries are forecasted simultaneously). We use official statistical data of inbound international tourism demand to Catalonia (Spain) and compare the forecasting accuracy of four processing methods for the input vector of the networks: levels, growth rates, seasonally adjusted levels and seasonally adjusted growth rates. When comparing the forecasting accuracy of the different inputs for each visitor market and for different forecasting horizons, we obtain significantly better forecasts with levels than with growth rates. We also find that seasonally adjusted series significantly improve the forecasting performance of the networks, which hints at the significance of deseasonalizing the time series when using neural networks with forecasting purposes. These results reveal that, when using seasonal data, neural networks performance can be significantly improved by working directly with seasonally adjusted levels.

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CLAVERÍA GONZÁLEZ, Óscar, MONTE MORENO, Enric and TORRA PORRAS, Salvador. Effects of removing the trend and the seasonal component on the forecasting performance of artificial neural network techniques. IREA – Working Papers. 2015. Vol.  IR15/03. ISSN 2014-1254. [consulted: 12 of August of 2026]. Available at: https://hdl.handle.net/2445/61328

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