International Journal of Soft Computing

Year: 2013
Volume: 8
Issue: 6
Page No. 406 - 415

A Genetic Algorithm for Optimizing the Amount of Emissions of Greenhouse GAZ for Capacitated Vehicle Routing Problem in Green Transportation

Authors : El Bouzekri El Idrissi Adiba, El Hilali Alaoui Ahmed and Benadada Youssef

References

Abounacer, R., G. Bencheikh, J. Boukachour, B. Dkhissi and A.E. Aloaui, 2009. Population metaheuristics to solve the professional staff transportation problem. Int. J. Comput. Sci. Network Secur., 9: 22-36.
Direct Link  |  

Baker, B.M. and M.A. Ayechew, 2003. A genetic algorithm for the vehicle routing problem. Comput. Oper. Res., 30: 787-800.
CrossRef  |  

Bektas, T. and G. Laporte, 2011. The pollution-routing problem. Transp. Res. B Methodol., 45: 1232-1250.
CrossRef  |  

Bodin, L.D. and L. Berman, 1979. Routing and scheduling of school buses by computer. Transp. Sci., 13: 113-129.
CrossRef  |  

Chen, A.L., G.K. yang, and Z.M. Wu, 2006. Hybrid discrete particle swarm optimization algorithm for capacitated vehicle routing problem. J. Zhejiang Uni. Sci. A, 7: 607-614.
Direct Link  |  

Christofides, N. and S. Elion, 1969. An algorithm for the vehicle-dispatching problem. Oper. Res. Q., 20: 309-318.
Direct Link  |  

Clarke, G. and G.W. Wright, 1964. Scheduling of vehicles from a central depot to a number of delivery points. Operat. Res., 12: 568-581.
CrossRef  |  

Filipec, M., D. Skrlec and S. Krajcar, 1998. An efficient implementation of genetic algorithms for constrained vehicle routing problem. Proceedings of the IEEE International Conference on System, Man and Cybernetics, Volume 3, October 11-14, 1998, San Diego, USA., pp: 2231-2236.

Fisher, M.L. and R. Jaikumar, 1981. A generalized assignment heuristic for vehicle routing. Networks, 11: 109-124.
CrossRef  |  Direct Link  |  

GHG Protocol, 2005. Calculating CO2 emissions from mobile sources. Guidance to calculation worksheets. GHG Protocol-Mobile Guide, V.1.3.

Gaskell, T.J., 1967. Bases for vehicle fleet scheduling. Oper. Res. Q., 18: 281-295.
Direct Link  |  

Gendreau, M., A. Hertz and G. Laporte, 1994. A tabu search heuristic for the vehicle routing problem. Manage. Sci., 40: 1276-1290.
CrossRef  |  

Goldberg, D.E., 1989. Genetic Algorithms in Search, Optimization and Machine Learning. 1st Edn., Addison-Wesley Professional, Boston, MA., USA., ISBN-13: 9780201157673, Pages: 412.

Golden, B.L., T.L. Magnanti and H.Q. Nguyen, 1977. Implementing vehicle routing algorithms. Networks, 7: 113-148.
CrossRef  |  

Halicioglu, F., 2008. An econometric study of Co2 emissions, energy consumption, income and foreign trade in Turkey. Energy Policy, 37: 1156-1164.
CrossRef  |  

Hickman, J.D., R. Joumard, D. Hassel, Z. Samaras and S. Sorenson, 1999. Methodology for calculating transport emissions and energy consumption. Report for the Project MEET, Transport Research Laboratory, Edinburgh, Scotland.

ICF, 2006. Assessment of greenhouse gas analysis techniques for transportation projects. NCHRP Project 25-25/Task 17, ICF Consulting, Research for the AASHTO Standing Committee on the Environment, Fairfax, USA.

IPCC, 2007. Observed changes in climate and their effects. Intergovernmental Panel on Climate Change, AR4 SYR Synthesis Report.

Jeon, G., H.R Leep and J.Y. Shim, 2007. A vehicle routing problem solved by using a hybrid genetic algorithm. Comput. Ind. Eng., 53: 680-692.
CrossRef  |  

Joumard, R., 1999. Methods of estimation of atmospheric emissions from transport: European scientist network and scientific state-of-the-art. INRETS Report LTE 9901, Action COST 319 Final Report, March, 1999.

Laporte, G., M. Gendreau, J.Y. Potvin and F. Semet, 2000. Classical and modern heuristics for the vehicle routing problem. Int. Trans. Operat. Res., 7: 285-300.
CrossRef  |  

Michalewicz, Z. and M. Schoenauer, 1996. Evolutionary algorithms for constrained parameter optimization problems. Evol. Comput., 4: 1-32.
CrossRef  |  Direct Link  |  

Palmer, A., 2007. The development of an integrated routing and carbon dioxide emissions model for goods vehicles. Ph.D. Thesis, School of Management, Cranfield University, Cranfield, UK

Sbihi, A. and R.W. Eglese, 2007. Combinatorial optimization and Green Logistics. 4OR, 5: 99-116.
Direct Link  |  

Schafer, A., 1998. The global demand for motorized mobility. Transp. Res. A, 32: 455-477.
CrossRef  |  

Skrlec, D., M. Filipec and S. Krajcar, 1997. A heuristic modification of genetic algorithm used for solving the single depot capacited vehicle routing problem. Proceedings of the Intelligent Information System, December 8-10, 1997, Grand Bahama Island, Bahama, pp: 184-188.

Sturm, P.J., S. Hausberger, M. Keller, M. Andre and H. Steven et al., 2005. Emissions and fuel consumption from heavy duty vehicles. Final Report of Action COST346/ARTEMIS, Graz University of Technology, Institute for Internal Combustion, Engines and Thermodynamics

Toth, P. and D. Vigo, 2002. The Vehicle Routing Problem. SIAM, Philadelphia, PA, ISBN-13: 9780898715798.

Van Woensel, T., R. Creten and N. Vandaele, 2001. Managing the environmental externalities of traffic logistics: The issue of emissions. Prod. Oper. Manage., 10: 207-223.
CrossRef  |  

World Energy Council, 2007. Transport Technologies and Policy Scenarios. World Energy Council, London, UK.

Xiao, Y., Q. Zhao, I. Kaku and Y. Xu, 2012. Development of a fuel consumption optimization model for the capacitated vehicle routing problem. Comput. Oper. Res., 39: 1419-1431.
CrossRef  |  

Zheng, Y. and B. Liu, 2006. Fuzzy vehicle routing model with credibility measure and its hybrid intelligent algorithm. Applied Math. Comput., 176: 673-683.
CrossRef  |  Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved