Multivariate time series and regression models for forecasting annual maintenance costs of EPDM roofing systems

Mishal Alashari, Khaled El-Rayes, Mohamed Attalla, Mamdouh Al-Ghzawi

Research output: Contribution to journalArticlepeer-review

Abstract

The scope of this study focuses on developing and comparing the performances of Vector Autoregession (VAR) time series and multivariate linear regression (MLR) models in predicting the annual maintenance costs of Ethylene Propylene Diene Monomer (EPDM) roofing systems. To accomplish the objective of this study, two prediction models that utilized VAR time series and MLR methodologies were developed to enable a comparison of their performances. These two models were developed in four main phases that focused on data collection, data analysis, model development, and validation. The data collection and analysis phases focused on collecting and analyzing historical data of 16 different EPDM roofing systems for a 23-year period from 1997 to 2019. This data was then used to develop two models for predicting the annual maintenance costs of EPDM roofing systems using VAR and MLR methodologies. The performance of these two models were then compared and analyzed in the validation phase. The findings of this performance analysis indicate that the average accuracy of the stepwise MLR model in predicting the annual maintenance costs of EPDM roofs (85%) was slightly higher than the VAR model (83%). The use of the developed models enables facility managers to improve the accuracy of forecasting future roof annual maintenance costs and to provide a more reliable multi-year plan and budget for their building maintenance programs.

Original languageEnglish (US)
Article number104618
JournalJournal of Building Engineering
Volume54
DOIs
StatePublished - Aug 15 2022
Externally publishedYes

Keywords

  • EPDM roofs
  • Facility management
  • Maintenance costs
  • Regression analysis
  • Roof maintenance

ASJC Scopus subject areas

  • Civil and Structural Engineering
  • Architecture
  • Building and Construction
  • Safety, Risk, Reliability and Quality
  • Mechanics of Materials

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