A data-driven forecasting strategy to predict continuous hourly energy demand in smart buildings

  • Deyslen Mariano-Hernández
  • , Luis Hernández-Callejo
  • , Martín Solís
  • , Angel Zorita-Lamadrid
  • , Oscar Duque-Perez
  • , Luis Gonzalez-Morales
  • , Felix Santos-García

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Smart buildings seek to have a balance between energy consumption and occupant com-fort. To make this possible, smart buildings need to be able to foresee sudden changes in the build-ing’s energy consumption. With the help of forecasting models, building energy management sys-tems, which are a fundamental part of smart buildings, know when sudden changes in the energy consumption pattern could occur. Currently, different forecasting methods use models that allow building energy management systems to forecast energy consumption. Due to this, it is increasingly necessary to have appropriate forecasting models to be able to maintain a balance between energy consumption and occupant comfort. The objective of this paper is to present an energy consumption forecasting strategy that allows hourly day-ahead predictions. The presented forecasting strategy is tested using real data from two buildings located in Valladolid, Spain. Different machine learning and deep learning models were used to analyze which could perform better with the proposed strategy. After establishing the performance of the models, a model was assembled using the mean of the prediction values of the top five models to obtain a model with better performance.

Original languageEnglish
Article number7886
JournalApplied Sciences (Switzerland)
Volume11
Issue number17
DOIs
StatePublished - Sep 2021

Keywords

  • Energy consumption
  • Forecasting models
  • Multi-step forecasting
  • Short-term forecasting
  • Smart building

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