Deep and machine learning approaches for forecasting the residual value of heavy construction equipment: a management decision support model

被引:31
作者
Alshboul, Odey [1 ]
Shehadeh, Ali [2 ]
Al-Kasasbeh, Maha [1 ]
Al Mamlook, Rabia Emhamed [3 ,4 ]
Halalsheh, Neda [1 ]
Alkasasbeh, Muna [5 ]
机构
[1] Hashemite Univ, Civil Engn, Zarqa, Jordan
[2] Yarmouk Univ, Civil Engn, Irbid, Jordan
[3] Western Michigan Univ, Ind Engn & Engn Management, Kalamazoo, MI 49008 USA
[4] Al Zawiyah Univ, Mech Engn, Zawia, Libya
[5] Cent Michigan Univ, Mt Pleasant, MI 48859 USA
关键词
Construction; Construction equipment; Construction planning; REPLACEMENT;
D O I
10.1108/ECAM-08-2020-0614
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Purpose Heavy equipment residual value forecasting is dynamic as it relies on the age, type, brand and model of the equipment, ranking condition, place of sale, operating hours and other macroeconomic gauges. The main objective of this study is to predict the residual value of the main types of heavy construction equipment. The residual value of heavy construction equipment is predicted via deep learning (DL) and machine learning (ML) approaches. Design/methodology/approach Based on deep and machine learning regression network integrated with data mining, random forest (RF), decision tree (DT), deep neural network (DNN) and linear regression (LR)-based modeling decision support models are developed. This research aims to forecast the residual value for different types of heavy construction equipment. A comprehensive investigation of publicly accessible auction data related to various types and categories of construction equipment was utilized to generate the model's training and testing datasets. In total, four performance metrics (i.e. the mean absolute error (MAE), mean squared error (MSE), the mean absolute percentage error (MAPE) and coefficient of determination (R2)) were used to measure and compare the developed algorithms' accuracy. Findings The developed algorithm's efficiency has been demonstrated by comparing the deep and machine learning predictions with real residual value. The accuracy of the results obtained by different proposed modeling techniques was comparable based on the performance evaluation metrics. DT shows the highest accuracy of 0.9111 versus RF with an accuracy of 0.8123, followed by DNN with an accuracy of 0.7755 and the linear regression with an accuracy of 0.5967. Originality/value The proposed novel model is designed as a supportive tool for construction project managers for equipment selling, purchasing, overhauling, repairing, disposing and replacing decisions.
引用
收藏
页码:4153 / 4176
页数:24
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