601
Views
41
CrossRef citations to date
0
Altmetric
Original Articles

Rigid pavement performance models by means of Markov Chains with half-year step time

ORCID Icon, , & ORCID Icon
Pages 830-843 | Received 07 Oct 2016, Accepted 23 Jun 2017, Published online: 25 Jul 2017

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Ahmad Altarabsheh, Ibrahim Altarabsheh & Mario Ventresca. (2023) A hybrid genetic algorithm to maintain road networks using reliability theory. Structure and Infrastructure Engineering 19:6, pages 810-823.
Read now
Nahla Alaswadko & Khulood Hwayyis. (2023) An approach to investigate the supplementary inconsistency between time series data for predicting road pavement performance models. International Journal of Pavement Engineering 24:2.
Read now
Jalal Barzegaran, Reza Shahni Dezfoulian & Mansour Fakhri. (2022) Estimation of IRI from PASER using ANN based on k-means and fuzzy c-means clustering techniques: a case study. International Journal of Pavement Engineering 23:14, pages 5153-5167.
Read now
Yiching Wu, Yichang (James) Tsai, Georgene M. Geary & Ryan Salameh. (2022) JPCP Slab-Level condition forecasting for slab replacement planning using 3D pavement surface data. International Journal of Pavement Engineering 23:14, pages 4958-4965.
Read now
Felix Obunguta & Kakuya Matsushima. (2022) Optimal pavement management strategy development with a stochastic model and its practical application to Ugandan national roads. International Journal of Pavement Engineering 23:7, pages 2405-2419.
Read now
Chenglong Liu, Difei Wu, Yishun Li, Shengchuan Jiang & Yuchuan Du. (2022) Mathematical insights into the relationship between pavement roughness and vehicle vibration. International Journal of Pavement Engineering 23:6, pages 1935-1947.
Read now
Arieh Sidess, Amnon Ravina & Eyal Oged. (2022) A model for predicting the deterioration of the international roughness index. International Journal of Pavement Engineering 23:5, pages 1393-1403.
Read now
Saeid Alimoradi, Amir Golroo & Seyed Mohammad Asgharzadeh. (2022) Development of pavement roughness master curves using Markov Chain. International Journal of Pavement Engineering 23:2, pages 453-463.
Read now
Heriberto Pérez-Acebo, Mikel Montes-Redondo, Andreas Appelt & Daniel J. Findley. (2022) A simplified skid resistance predicting model for a freeway network to be used in a pavement management system. International Journal of Pavement Engineering 0:0, pages 1-19.
Read now
Sylvester Inkoom & John O. Sobanjo. (2019) Competing risks models for the deterioration of highway pavement subject to hurricane events. Structure and Infrastructure Engineering 15:6, pages 837-850.
Read now

Articles from other publishers (31)

David Vallès-VallèsCristina Torres-Machi. (2023) Deterioration of Flexible Pavements Induced by Flooding: Case Study Using Stochastic Monte Carlo Simulations in Discrete-Time Markov Chains. Journal of Infrastructure Systems 29:1.
Crossref
Xin Sun, Honglei Wang & Shilong Mei. (2023) Highway performance prediction model of International Roughness Index based on panel data analysis in subtropical monsoon climate. Construction and Building Materials 366, pages 130232.
Crossref
Ángela Alonso Solórzano, Heriberto Pérez Acebo, Alaitz Linares Unamunzaga & Hernán Gonzalo Orden. (2023) Probabilistic International Roughness Index (IRI) prediction model for a climate homogeneous region. Transportation Research Procedia 71, pages 46-52.
Crossref
Yishun Li, Chenglong Liu, Qian Gao, Difei Wu, Feng Li & Yuchuan Du. (2022) ConTrack Distress Dataset: A Continuous Observation for Pavement Deterioration Spatio-Temporal Analysis. IEEE Transactions on Intelligent Transportation Systems 23:12, pages 25004-25017.
Crossref
Yazan Abukhalil, Mohamed S. Yamany & Omar Smadi. (2022) Detection of Unreported Treatments in Pavement Management System of Iowa DOT Using Machine Learning Classification Algorithm. Journal of Transportation Engineering, Part B: Pavements 148:4.
Crossref
Qiao Dong, Xueqin Chen, Shi Dong & Fujian Ni. (2022) Data Analysis in Pavement Engineering: An Overview. IEEE Transactions on Intelligent Transportation Systems 23:11, pages 22020-22039.
Crossref
Filip Šroubek, Michal Šorel & Josef Žák. (2021) Precise International Roughness Index Calculation. International Journal of Pavement Research and Technology 15:6, pages 1413-1419.
Crossref
Han-Cheng Dan, Chongyu Ling, Zhiheng Zhu, Liansheng Gao & Xiaojun Zeng. (2022) A data fusion approach for estimating traffic distribution characteristics of expressway: A case study of guangdong province, china. Frontiers in Materials 9.
Crossref
Aihui Hu, Qiang Bai, Lin Chen, Siyuan Meng, Qihui Li & Zhiman Xu. (2022) A review on empirical methods of pavement performance modeling. Construction and Building Materials 342, pages 127968.
Crossref
Faizan Mushtaq, Zhian Huang, Syyed Adnan Raheel Shah, Yinghua Zhang, Yukun Gao, Marc Azab, Sajid Hussain & Muhammad Kashif Anwar. (2022) Performance Optimization Approach of Polymer Modified Asphalt Mixtures with PET and PE Wastes: A Safety Study for Utilizing Eco-Friendly Circular Economy-Based SDGs Concepts. Polymers 14:12, pages 2493.
Crossref
Omid Rahmani, Hosein Ghasemzadeh Tehrani & Amir Saman Abdollahzadeh Nasiri. (2022) A new procedure for analysis of ride quality in roads using multi-body dynamic simulation. Innovative Infrastructure Solutions 7:3.
Crossref
Martin Decky, Zuzana Papanova, Michal Juhas & Maria Kudelcikova. (2022) Evaluation of the Effect of Average Annual Temperatures in Slovakia between 1971 and 2020 on Stresses in Rigid Pavements. Land 11:6, pages 764.
Crossref
Amirreza Mahpour & Tamer El-Diraby. (2022) Application of Machine-Learning in Network-Level Road Maintenance Policy-Making: The Case of Iran. Expert Systems with Applications 191, pages 116283.
Crossref
Mohamed Gharieb, Takafumi NishikawaShozo Nakamura & Khampaseuth Thepvongsa. (2022) MODELING OF PAVEMENT ROUGHNESS UTILIZING ARTIFICIAL NEURAL NETWORK APPROACH FOR LAOS NATIONAL ROAD NETWORK. JOURNAL OF CIVIL ENGINEERING AND MANAGEMENT 28:4, pages 261-277.
Crossref
Khaled A. Abaza. (2022) Simplified Exhaustive Search Approach for Estimating the Nonhomogeneous Transition Probabilities for Infrastructure Asset Management. Journal of Infrastructure Systems 28:1.
Crossref
Vidas Žuraulis, Henrikas Sivilevičius, Eldar Šabanovič, Valentin Ivanov & Viktor Skrickij. (2021) Variability of Gravel Pavement Roughness: An Analysis of the Impact on Vehicle Dynamic Response and Driving Comfort. Applied Sciences 11:16, pages 7582.
Crossref
Mohamed S. Yamany, Dulcy M. AbrahamSamuel Labi. (2021) Comparative Analysis of Markovian Methodologies for Modeling Infrastructure System Performance. Journal of Infrastructure Systems 27:2.
Crossref
Khaled A. Abaza. (2021) Empirical-Markovian approach for estimating the flexible pavement structural capacity: Caltrans method as a case study. International Journal of Transportation Science and Technology 10:2, pages 156-166.
Crossref
Heber Hernández, Elisabete Alberdi, Heriberto Pérez-Acebo, Irantzu Álvarez, María José García, Isabel Eguia & Kevin Fernández. (2021) Managing Traffic Data through Clustering and Radial Basis Functions. Sustainability 13:5, pages 2846.
Crossref
Mohamed S. Yamany & Dulcy M. Abraham. (2021) Hybrid Approach to Incorporate Preventive Maintenance Effectiveness into Probabilistic Pavement Performance Models. Journal of Transportation Engineering, Part B: Pavements 147:1, pages 04020077.
Crossref
V. U. Rejani, Velayudhan Sunitha & Samson Mathew. (2020) Upgradation of pavement deterioration models for urban roads by non-hierarchical clustering. International Journal of Pavement Research and Technology 14:2, pages 243-251.
Crossref
Heriberto Pérez-Acebo, Hernán Gonzalo-Orden, Daniel J. Findley & Eduardo Rojí. (2021) Modeling the international roughness index performance on semi-rigid pavements in single carriageway roads. Construction and Building Materials 272, pages 121665.
Crossref
Costel Pleșcan, Elena-Loredana Pleșcan, Mariana D. Stanciu, Marius Botiș & Daniel Taus. (2021) Sensitivity Analysis of Rigid Pavement Design Based on Semi-Empirical Methods: Romanian Case Study. Symmetry 13:2, pages 168.
Crossref
David Llopis-Castelló, Tatiana García-Segura, Laura Montalbán-Domingo, Amalia Sanz-Benlloch & Eugenio Pellicer. (2020) Influence of Pavement Structure, Traffic, and Weather on Urban Flexible Pavement Deterioration. Sustainability 12:22, pages 9717.
Crossref
B. Moins, C. France, W. Van den bergh & A. Audenaert. (2020) Implementing life cycle cost analysis in road engineering: A critical review on methodological framework choices. Renewable and Sustainable Energy Reviews 133, pages 110284.
Crossref
Heriberto Pérez-Acebo, Hernán Gonzalo-Orden, Daniel J. Findley & Eduardo Rojí. (2020) A skid resistance prediction model for an entire road network. Construction and Building Materials 262, pages 120041.
Crossref
Yingjun Jiang, Yong Yi, Tian Tian, Jiangtao Fan, Kejia Yuan, Changqing Deng & Jinshun Xue. (2020) Development and Application of Skid Resistance Fog Seal for Pavements. Coatings 10:9, pages 867.
Crossref
Heriberto Pérez-Acebo, Alaitz Linares-Unamunzaga, Eduardo Rojí & Hernán Gonzalo-Orden. (2020) IRI Performance Models for Flexible Pavements in Two-Lane Roads until First Maintenance and/or Rehabilitation Work. Coatings 10:2, pages 97.
Crossref
Alireza Mohammadi, Luis Amador-JimenezFeras Elsaid. (2019) Simplified Pavement Performance Modeling with Only Two-Time Series Observations: A Case Study of Montreal Island. Journal of Transportation Engineering, Part B: Pavements 145:4, pages 05019004.
Crossref
Syyed Raheel Shah, Hunain Arshad, Ahsan Waqar, Muhammad Saeed, Salman Hafeez, Junaid Mansoor, Abdullah Sadiq & Muhammad Malik. (2018) Saving Energy in the Transportation Sector: An Analysis of Modified Bitumen Application Based on Marshall Test. Energies 11:11, pages 3025.
Crossref
Heriberto Pérez-Acebo, Alaitz Linares-Unamunzaga, Ricardo Abejón & Eduardo Rojí. (2018) Research Trends in Pavement Management during the First Years of the 21st Century: A Bibliometric Analysis during the 2000–2013 Period. Applied Sciences 8:7, pages 1041.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.