1. [1] T.G. Crainic, and J.-M. Rousseau, "Multicommodity, multimode freight transportation: A general modeling and algorithmic framework for the service network design problem", Transportation Research Part B: Methodological, Vol. 20(3), pp. 225-242, 1986. [ DOI:10.1016/0191-2615(86)90019-6] 2. [2] S. Nguyen, E. Morello, and S. Pallottino, "Discrete time dynamic estimation model for passenger origin/destination matrices on transit networks", Transportation Research Part B: Methodological, Vol. 22(4), pp. 251-260, 1988. [ DOI:10.1016/0191-2615(88)90002-1] 3. [3] M. Delavar, F. Samadzadegan, and P. Pahlavani, "A GIS-Assisted optimal urban route finding approach based on genetic algorithms", International archives of photogrammetry remote sensing and spatial information sciences, Vol. 35(Part 2), pp. 305-308, 2004. 4. [4] C. Davies, and P. Lingras, "Genetic algorithms for rerouting shortest paths in dynamic and stochastic networks", European Journal of Operational Research, Vol. 144(1), pp. 27-38, 2003. [ DOI:10.1016/S0377-2217(01)00354-X] 5. [5] K. Abdelghany, and H. Mahmassani, "Dynamic trip assignment-simulation model for intermodal transportation networks", Transportation Research Record: Journal of the Transportation Research Board, pp. 52-60, 2001. [ DOI:10.3141/1771-07] 6. [6] B. Huang, R.L. Cheu, and Y.S. Liew, "GIS and genetic algorithms for HAZMAT route planning with security considerations", International Journal of Geographical Information Science, Vol. 18(8), pp. 769-787, 2004. [ DOI:10.1080/13658810410001705307] 7. [7] A. Keshtiarast, A. Alesheikh, and A. Kheirabadi, "Best route finding based on cost in multimodal network with care of networks constraints", in Map Asia Conference. Bangkok, Thailand. 2006. 8. [8] L. Qu, and Y. Chen, "A hybrid MCDM method for route selection of multimodal transportation network", in Advances in Neural Networks, Springer. pp. 374-383, 2008. [ DOI:10.1007/978-3-540-87732-5_42] 9. [9] R.A. Abbaspour, and F. Samadzadegan, "Time-dependent personal tour planning and scheduling in metropolises", Expert Systems with Applications, Vol. 38(10), pp. 12439-12452, 2011. [ DOI:10.1016/j.eswa.2011.04.025] 10. [10] S.M. Qavami, A. Mansourian, and M.S. Mesgari, "A web geo-processing service for integrating different modes of urban transportation (A case study of Tehran)", Traffic Management Studies, Vol. 1(6), pp. 1-28, 2011. 11. [11] S.M. Qavami, A. Mansourian, and M.S. Mesgari, "Design and implementation of a web based distributed system for itinerary planning in uncertain urban multimodal network", Journal of Transportation Research, Vol. 8(1), pp. 21-36, 2011. 12. [12] N. Borole, N. Goel, P. Vedagiri, and T.V. Mathew, "Multimodal Public Transit Trip Planner with Real-time Transit Data", Procedia-Social and Behavioral Sciences, Vol. 104, pp. 775-784, 2013. [ DOI:10.1016/j.sbspro.2013.11.172] 13. [13] L. Antsfeld, and T. Walsh, "Finding multi-criteria optimal paths in multi-modal public transportation networks using the transit algorithm", in Intelligent Transport Systems World Congress, 10p., 2012. 14. [14] K.G. Zografos, and K.N. Androutsopoulos, "Algorithms for itinerary planning in multimodal transportation networks", IEEE Transactions on Intelligent Transportation Systems, Vol. 9(1), pp. 175-184, 2008. [ DOI:10.1109/TITS.2008.915650] 15. [15] L. Liu, J. Yang, H. Mu, X. Li, and F. Wu, "Exact algorithms for multi-criteria multi-modal shortest path with transfer delaying and arriving time-window in urban transit network", Applied Mathematical Modelling, Vol. 38(9), pp. 2613-2629, 2014. [ DOI:10.1016/j.apm.2013.10.059] 16. [16] P. Pahlavani, and M.R. Delavar, "Multi-criteria route planning based on a driver's preferences in multi-criteria route selection", Transportation Research Part C: Emerging Technologies, Vol. 40, pp. 14-35, 2014. [ DOI:10.1016/j.trc.2014.01.001] 17. [17] S. Nadi, and M.R. Delavar, "Multi-criteria, personalized route planning using quantifier-guided ordered weighted averaging operators", International Journal of Applied Earth Observation and Geoinformation, Vol. 13(3), pp. 322-335, 2011. [ DOI:10.1016/j.jag.2011.01.003] 18. [18] M. Bielli, A. Boulmakoul, and H. Mouncif, "Object modeling and path computation for multimodal travel systems", European Journal of Operational Research, Vol. 175(3), pp. 1705-1730, 2006. [ DOI:10.1016/j.ejor.2005.02.036] 19. [19] F. Ghaderi, and P. Pahlavani, "Finding the robust multi-modal route by integrating the fuzzy-AHP with the quantifier-guided OWA", Journal of Geomatics Science and Technology, Vol. 5(2), pp. 67-78, 2015. 20. [20] Ghaderi, F., and P. Pahlavani, "A new multimodal multicriteria route planning model by integrating a fuzzy-AHP weighting method and a simulated annealing algorithm", The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. 40(1), pp. 203-209, 2015. [ DOI:10.5194/isprsarchives-XL-1-W5-203-2015] 21. [21] J. Dibbelt, T. Pajor, and D. Wagner, "User-constrained multimodal route planning", Journal of Experimental Algorithmics (JEA), Vol. 19: pp. 118-129, 2015. [ DOI:10.1145/2699886] 22. [22] M.J. Atallah, Algorithms and theory of computation handbook. CRC press, 1998. [ DOI:10.1201/9781420049503] 23. [23] K. Chen and J.C. Miles, ITS handbook 2004: Recommendations from the world road association (PIARC), 2004. 24. [24] S. Chakhar, and J.-M. Martel, "Enhancing geographical information systems capabilities with multi-criteria evaluation functions", Journal of Geographic Information and Decision Analysis, Vol. 7(2), pp. 47-71, 2003. 25. [25] P. Pahlavani, F. Samadzadegan, and M.R. Delavar, "A GIS-based approach for urban multi-criteria quasi optimized route guidance by considering unspecified site satisfaction", Lecture Notes in Computer Science (LNCS), Vol. 4197, Springer. pp. 287-303, 2006. [ DOI:10.1007/11863939_19] 26. [26] H. Yu, and F. Lu, "A multi-modal route planning approach with an improved genetic algorithm", The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. 38, pp. 343-348, 2012. 27. [27] K. Deb, A. Pratap, S. Agarwal, and T. Meyarivan, "A fast and elitist multiobjective genetic algorithm: NSGA-II", IEEE Transactions on Evolutionary Computation, Vol. 6(2), pp. 182-197, 2002. [ DOI:10.1109/4235.996017] 28. [28] C. Hwang, and K. Yoon, Multiple attribute decision making: methods and applications: a state-of-the-art survey, Vol. 13, Springer-Verlag. New York, 1981. [ DOI:10.1007/978-3-642-48318-9] 29. [29] G.R. Jahanshahloo, F.H. Lotfi, and M. Izadikhah, "An algorithmic method to extend TOPSIS for decision-making problems with interval data", Applied mathematics and computation, Vol. 175(2), pp. 1375-1384, 2006. [ DOI:10.1016/j.amc.2005.08.048] 30. [30] M. Gen, and R. Cheng, Genetic algorithms and engineering optimization. John Wiley & Son, 2000. 31. [31] P.J. Bentley, and J.P. Wakefield, "An analysis of multiobjective optimization within genetic algorithms", Technical Report, ENGPJB96, University of Huddersfield, UK. 1996.
|