Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs
The maintenance management decisions of network-level asphalt pavements have long been a challenge to highway agencies, and a great amount of factors have been involved. In this study, a network-level optimization method was established by integrating the maintenance benefits into the zero-one progr...
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Series: | Advances in Civil Engineering |
Online Access: | http://dx.doi.org/10.1155/2021/4699838 |
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doaj-c7ee1b69068d4710a2ed55b06becd7eb2021-09-06T00:01:23ZengHindawi LimitedAdvances in Civil Engineering1687-80942021-01-01202110.1155/2021/4699838Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption CostsLeilei Chen0Zepeng Fan1Pengfei Liu2Zhendong Qian3Key Laboratory of Safety and Risk Management on Transport InfrastructuresInstitute of Highway EngineeringInstitute of Highway EngineeringKey Laboratory of Safety and Risk Management on Transport InfrastructuresThe maintenance management decisions of network-level asphalt pavements have long been a challenge to highway agencies, and a great amount of factors have been involved. In this study, a network-level optimization method was established by integrating the maintenance benefits into the zero-one programming optimization model. An optimized performance evaluation method of asphalt pavement was proposed which contains 11 different kinds of combinations. The benefit model quantifies the cost savings of user travel time and vehicle fuel consumption to the pavement condition index (PCI) and ride quality index (RQI), respectively. Based on the simplified evaluation method as well as the quantified maintenance benefit model, an optimization model was established by employing the zero-one programming. This optimization model aimed to maximize the improvements/price ratio of pavement maintenance for the whole pavement network. The calculation results present the optimal strategies of maintenance for every road section in the network. The applicability of the newly proposed model was validated by a case study. The methodology developed in this study helps to offer guidelines to highway agencies in managing and making decisions about network-level pavement maintenance.http://dx.doi.org/10.1155/2021/4699838 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Leilei Chen Zepeng Fan Pengfei Liu Zhendong Qian |
spellingShingle |
Leilei Chen Zepeng Fan Pengfei Liu Zhendong Qian Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs Advances in Civil Engineering |
author_facet |
Leilei Chen Zepeng Fan Pengfei Liu Zhendong Qian |
author_sort |
Leilei Chen |
title |
Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs |
title_short |
Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs |
title_full |
Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs |
title_fullStr |
Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs |
title_full_unstemmed |
Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs |
title_sort |
optimization model of network-level pavement maintenance decision considering user travel time and vehicle fuel consumption costs |
publisher |
Hindawi Limited |
series |
Advances in Civil Engineering |
issn |
1687-8094 |
publishDate |
2021-01-01 |
description |
The maintenance management decisions of network-level asphalt pavements have long been a challenge to highway agencies, and a great amount of factors have been involved. In this study, a network-level optimization method was established by integrating the maintenance benefits into the zero-one programming optimization model. An optimized performance evaluation method of asphalt pavement was proposed which contains 11 different kinds of combinations. The benefit model quantifies the cost savings of user travel time and vehicle fuel consumption to the pavement condition index (PCI) and ride quality index (RQI), respectively. Based on the simplified evaluation method as well as the quantified maintenance benefit model, an optimization model was established by employing the zero-one programming. This optimization model aimed to maximize the improvements/price ratio of pavement maintenance for the whole pavement network. The calculation results present the optimal strategies of maintenance for every road section in the network. The applicability of the newly proposed model was validated by a case study. The methodology developed in this study helps to offer guidelines to highway agencies in managing and making decisions about network-level pavement maintenance. |
url |
http://dx.doi.org/10.1155/2021/4699838 |
work_keys_str_mv |
AT leileichen optimizationmodelofnetworklevelpavementmaintenancedecisionconsideringusertraveltimeandvehiclefuelconsumptioncosts AT zepengfan optimizationmodelofnetworklevelpavementmaintenancedecisionconsideringusertraveltimeandvehiclefuelconsumptioncosts AT pengfeiliu optimizationmodelofnetworklevelpavementmaintenancedecisionconsideringusertraveltimeandvehiclefuelconsumptioncosts AT zhendongqian optimizationmodelofnetworklevelpavementmaintenancedecisionconsideringusertraveltimeandvehiclefuelconsumptioncosts |
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