Genetic Algorithm Applied for Optimization of Pavement Maintenance under Overload Traffic: Case Study Indonesia National Highway

Article Preview

Abstract:

National Road Network which consists of a traditional road structure and modern roads, require planned maintenance and should be in accordance with the needs. The limited choice of available national road network and the deviation of the overloading encourage the government to be more responsive to carry out maintenance management. The institution in charge of road maintenance is often constrained by the limited budget available. A two-objective optimization model considers maximum roughness and minimum maintenance cost for used road network with overload. The study was conducted on the entire national road network in West Java which are paved with flexible pavement. In the proposed approach, data mining model are used for predicting the roughness index over a given period of time. Routine and periodic maintenance are chosen in this study. Multi-objective optimization model was developed based on Genetic Algorithms. Budget constraints and overloading are the two constraints in the developed model. Based on the R-Tools result, the Pareto optimal solutions of the two objective functions are obtained. From the optimal solutions represented by roughness index and cost, an agency more easily obtain the information of the maintenance planning. Results of the developed model has been implemented through the selection of maintenance on the road network scenarios with different levels of overload.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

369-378

Citation:

Online since:

July 2016

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2016 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Saidi A. Iwan, Jalan Raya Sebagai Desain Kebudayaan, Jurnal Sosioteknologi Edisi 19 Tahun 9 ITB, (2010) 769-781.

Google Scholar

[2] Tranggono M., (2013) Kajian Penggunaan HDM-4 untuk Sistem Pengelolaan Perkerasan Jalan di Indonesia, Jurnal Transportasi Vol. 13 No. 2 Agustus, hal 135-144.

Google Scholar

[3] Ede A. Nkem, Cumulative Damage Effects of Truck Overloads on Nigerian Road Pavement, International Journal of Civil & Environmental Engineering IJCEE-IJENS Vol: 14 No: 01 (2014).

Google Scholar

[4] Sianipar C. P. M., Dowaki K., Eco-burden in pavement maintenance: Effects from over traffic growth and overload, Sustainable Cities and Society 12 (2014) 31–45.

DOI: 10.1016/j.scs.2014.01.002

Google Scholar

[5] Pais, J., Amorim, S., and Minhoto, M. (2013). Impact of Traffic Overload on Road Pavement Performance., J. Transp. Eng., ASCE, 139(9), 873–879.

DOI: 10.1061/(asce)te.1943-5436.0000571

Google Scholar

[6] Morcous G., Lounis Z., Maintenance optimization of infrastructure networks using genetic algorithms, Automation in Construction 14 (2005) 129– 142.

DOI: 10.1016/j.autcon.2004.08.014

Google Scholar

[7] Elhadidy A. A., Elbeltagi E. E., Ammar M. A., Optimum analysis of pavement maintenance using multi-objective genetic algorithms, HBRC Journal (2015) 11, 107–113.

DOI: 10.1016/j.hbrcj.2014.02.008

Google Scholar

[8] Chootinan p., Chen A., Horrocks M. R., Bolling D., A multi-year pavement maintenance program using a stochastic simulation-based genetic algorithm approach Transportation Research Part A 40 (2006) 725–743.

DOI: 10.1016/j.tra.2005.12.003

Google Scholar

[9] Fwa, T., Chan, W., and Hoque, K. (2000). Multiobjective Optimization for Pavement Maintenance Programming., J. Transp. Eng., 126(5), 367–374.

DOI: 10.1061/(asce)0733-947x(2000)126:5(367)

Google Scholar

[10] DGH (2012) Annual Report 2012, Public Work Ministry.

Google Scholar

[11] Nega A., Nikraz H., Herath S., Ghadimi B., Distress Identification, Cost Analysis and Pavement Temperature Prediction for the Long-Term Pavement Performance for Western Australia, IACSIT International Journal of Engineering and Technology, Vol. 7, No. 4, August 2015 pp.167-175.

DOI: 10.7763/ijet.2015.v7.803

Google Scholar

[12] Sayers, M.,W., Karamihas, S.,M., (1995) The little book of profiling, UMTRI, In: Sayers W, editor. On the calculation of IRI from longitudinal road profile.

Google Scholar

[13] Bennett, C. R. : What Makes a Pavement Management System Implementation Successful? Washington D.C. World Bank. (2006).

Google Scholar

[14] Ruotoistenmaki, A., &Seppla, T. : Road condition rating based on factor analysis of road condition measurements. Transport Policy, (2007), pp.410-420.

DOI: 10.1016/j.tranpol.2007.03.006

Google Scholar

[15] Rusbintardjo, The Influence of Overloading Truck to the Road Condition, Proceedings of the Eastern Asia Society for Transportation Studies, Vol. 9, (2013).

Google Scholar

[16] Karim R. H., Ibrahim N. I., Saifizul A. A., Yamanaka J., Effectiveness of vehicle weight enforcement in a developing country using weigh-in-motion sorting system considering vehicle by-pass and enforcement capability, IATSS Research 37 (2014).

DOI: 10.1016/j.iatssr.2013.06.004

Google Scholar

[17] Bagui S., Das A., Bapanapalli C., Controlling Vehicle Overloading in BOT Projects, Procedia - Social and Behavioral Sciences 104 (2013) 962 – 971.

DOI: 10.1016/j.sbspro.2013.11.191

Google Scholar

[18] Hang w., Xie Y., He Jie, Practices of using weigh-in-motion technology for truck weight, Transport Policy 30 (2013) 143–152.

DOI: 10.1016/j.tranpol.2013.09.013

Google Scholar

[19] Haas, Ralph, 2003. Good technical foundations are essential for successful pavement management, key note paper, proceedings of MAIREPAV' 03, Guimaraes, Portugal.

Google Scholar

[20] Karlaftis A. G., Badr A., Predicting asphalt pavement crack initiation following rehabilitation treatments, Transportation Research Part C 55 (2015) 510–517.

DOI: 10.1016/j.trc.2015.03.031

Google Scholar

[21] Rifai, A., I., Hadiwardoyo, S., P., Correia, Gomes A., Pereira, (2015), A Conceptual Model Decision Support System for Maintenance Optimization of Overload Highway Pavements under Financial Constraints, Quailty In Research, Lombok, Indonesia.

Google Scholar

[22] Rifai, A., I., Hadiwardoyo, S., P., Correia, Gomes A., Pereira, P., Cortez, P, (2014) Implementasi Data Mining Untuk Mendukung Sistem Manajemen Perkerasan Jalan Di Indonesia, Konfrensi Regional Teknik Jalan Ke-13, Makassar.

Google Scholar

[23] Rifai, A., I., Hadiwardoyo, S., P., Correia, Gomes A., Pereira, P., Cortez, P, (2015), Data Mining Applied for the Prediction of Highway Roughness under Overload Traffic, International Journal of Technology (accepted).

DOI: 10.14716/ijtech.v6i5.1186

Google Scholar

[24] Cortez, P., (2010).

Google Scholar