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[해외논문] Two-Stage Vehicle Routing Optimization for Logistics Distribution Based on HSA-HGBS Algorithm 원문보기

IEEE access : practical research, open solutions, v.10, 2022년, pp.99646 - 99660  

Sun, Qi (Key Laboratory of Railway Industry of BIM Engineering and Intelligent for Electric Power, Traction Power Supply, Communication and Signaling, Lanzhou Jiaotong University, Lanzhou, China) ,  Zhang, Haifei (School of Artificial Intelligence and Computer Science, Jiangnan University, Wuxi, China) ,  Dang, Jianwu (School of Automation and Electrical Engineering, Lanzhou Jiaotong University, Lanzhou, China)

초록이 없습니다.

참고문헌 (43)

  1. Dantzig, G. B., Ramser, J. H.. The Truck Dispatching Problem. Management science, vol.6, no.1, 80-91.

  2. Wagner, Tina. Regional traffic impacts of logistics-related land use. Transport policy, vol.17, no.4, 224-229.

  3. CHRISTOFIDES, NICOS. Fixed routes and areas for delivery operations. International journal of physical distribution, vol.1, no.2, 87-92.

  4. Wang, Y., Ma, X., Xu, M., Liu, Y., Wang, Y.. Two-echelon logistics distribution region partitioning problem based on a hybrid particle swarm optimization-genetic algorithm. Expert systems with applications, vol.42, no.12, 5019-5031.

  5. Zhang, Haifei, Ge, Hongwei, Yang, Jinlong, Tong, Yubing. Review of Vehicle Routing Problems: Models, Classification and Solving Algorithms. Archives of computational methods in engineering : state of the art reviews, vol.29, no.1, 195-221.

  6. Akyol, Sinem, Alatas, Bilal. Plant intelligence based metaheuristic optimization algorithms. The Artificial intelligence review, vol.47, no.4, 417-462.

  7. Alatas, Bilal, Bingol, Harun. Comparative Assessment Of Light-based Intelligent Search And Optimization Algorithms. Light & engineering, vol.3, 51-59.

  8. Alatas, Bilal, Bingol, Harun. A Physics Based Novel Approach for Travelling Tournament Problem: Optics Inspired Optimization. Information technology and control, vol.48, no.3, 373-388.

  9. Bingol, Harun, Alatas, Bilal. Chaos based optics inspired optimization algorithms as global solution search approach. Chaos, solitons, and fractals, vol.141, 110434-.

  10. Heßler, Katrin, Irnich, Stefan. A branch-and-cut algorithm for the soft-clustered vehicle-routing problem. Discrete applied mathematics, vol.288, 218-234.

  11. Lahyani, R., Khemakhem, M., Semet, F.. Rich vehicle routing problems: From a taxonomy to a definition. European journal of operational research, vol.241, no.1, 1-14.

  12. Wang, Jiahai, Weng, Taiyao, Zhang, Qingfu. A Two-Stage Multiobjective Evolutionary Algorithm for Multiobjective Multidepot Vehicle Routing Problem With Time Windows. IEEE transactions on cybernetics, vol.49, no.7, 2467-2478.

  13. Ting, C.J., Wu, K.C., Chou, H.. Particle swarm optimization algorithm for the berth allocation problem. Expert systems with applications, vol.41, no.4, 1543-1550.

  14. Akpinar, S.. Hybrid large neighbourhood search algorithm for capacitated vehicle routing problem. Expert systems with applications, vol.61, 28-38.

  15. Karakatič, Sašo, Podgorelec, Vili. A survey of genetic algorithms for solving multi depot vehicle routing problem. Applied soft computing, vol.27, 519-532.

  16. Wang, Yuan, Wang, Ling, Chen, Guangcai, Cai, Zhaoquan, Zhou, Yongquan, Xing, Lining. An Improved Ant Colony Optimization algorithm to the Periodic Vehicle Routing Problem with Time Window and Service Choice. Swarm and evolutionary computation, vol.55, 100675-.

  17. Bortfeldt, Andreas, Yi, Junmin. The Split Delivery Vehicle Routing Problem with three-dimensional loading constraints. European journal of operational research, vol.282, no.2, 545-558.

  18. Zhen, Lu, Ma, Chengle, Wang, Kai, Xiao, Liyang, Zhang, Wei. Multi-depot multi-trip vehicle routing problem with time windows and release dates. Transportation research. Part E, Logistics and transportation review, vol.135, 101866-.

  19. Vieira, Yesus Emmanuel Medeiros, de Mello Bandeira, Renata Albergaria, Silva Júnior, Orivalde Soares da. Multi-depot vehicle routing problem for large scale disaster relief in drought scenarios: The case of the Brazilian northeast region. International journal of disaster risk reduction : IJDRR, vol.58, 102193-.

  20. Solomon, Marius M.. Algorithms for the Vehicle Routing and Scheduling Problems with Time Window Constraints. Operations research, vol.35, no.2, 254-265.

  21. Li, Feiyue, Golden, Bruce, Wasil, Edward. Very large-scale vehicle routing: new test problems, algorithms, and results. Computers & operations research, vol.32, no.5, 1165-1179.

  22. Mester, D., Braysy, O.. Active-guided evolution strategies for large-scale capacitated vehicle routing problems. Computers & operations research, vol.34, no.10, 2964-2975.

  23. Accorsi, Luca, Vigo, Daniele. A Fast and Scalable Heuristic for the Solution of Large-Scale Capacitated Vehicle Routing Problems. Transportation science, vol.55, no.4, 832-856.

  24. Duhamel, C., Lacomme, P., Prodhon, C.. Efficient frameworks for greedy split and new depth first search split procedures for routing problems. Computers & operations research, vol.38, no.4, 723-739.

  25. 10.1109/LINDI.2011.6031155 

  26. Oper. Res. Computerized vehicle routing in the soft drink industry Wasil 35 1 6 1987 10.1287/opre.35.1.6 

  27. Asia-Pacific J. Oper. Res. Modeling the vehicle routing problem for a soft drink distribution company Cheong 19 1 17 2002 

  28. Beasley, J.E., Christofides, N.. Vehicle routing with a sparse feasibility graph. European journal of operational research, vol.98, no.3, 499-511.

  29. Huo, Lisu, Zhu, Jianghan, Wu, Guohua, Li, Zhimeng. A Novel Simulated Annealing Based Strategy for Balanced UAV Task Assignment and Path Planning. Sensors, vol.20, no.17, 4769-.

  30. Babaee Tirkolaee, Erfan, Abbasian, Parvin, Soltani, Mehdi, Ghaffarian, Seyed Ali. Developing an applied algorithm for multi-trip vehicle routing problem with time windows in urban waste collection: A case study. Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA, vol.37, no.1, 4-13.

  31. Fan, Houming, Zhang, Yueguang, Tian, Panjun, Lv, Yingchun, Fan, Hao. Time-dependent multi-depot green vehicle routing problem with time windows considering temporal-spatial distance. Computers & operations research, vol.129, 105211-.

  32. Wilck IV, Joseph Hubert, Cavalier, Tom M.. A Genetic Algorithm for the Split Delivery Vehicle Routing Problem. American journal of operations research, vol.2, no.2, 207-216.

  33. Rabbouch, Bochra, Saâdaoui, Foued, Mraihi, Rafaa. Efficient implementation of the genetic algorithm to solve rich vehicle routing problems. Operational research : an International Journal, vol.21, no.3, 1763-1791.

  34. Ibarra-Rojas, O. J., Silva-Soto, Y.. Vehicle routing problem considering equity of demand satisfaction. Optimization letters, vol.15, no.6, 2275-2297.

  35. 10.1109/ITAIC.2019.8785629 

  36. Araya, Ignacio, Moyano, Mauricio, Sanchez, Cristobal. A beam search algorithm for the biobjective container loading problem. European journal of operational research, vol.286, no.2, 417-431.

  37. Yavuz, Mesut. Iterated beam search for the combined car sequencing and level scheduling problem. International journal of production research, vol.51, no.12, 3698-3718.

  38. Golle, Uli, Rothlauf, Franz, Boysen, Nils. Iterative beam search for car sequencing. Annals of operations research, vol.226, no.1, 239-254.

  39. Yin, Peng-Yeng, Yu, Shiuh-Sheng, Wang, Pei-Pei, Wang, Yi-Te. A hybrid particle swarm optimization algorithm for optimal task assignment in distributed systems. Computer standards & interfaces, vol.28, no.4, 441-450.

  40. Shima, Tal, Rasmussen, Steven J., Sparks, Andrew G., Passino, Kevin M.. Multiple task assignments for cooperating uninhabited aerial vehicles using genetic algorithms. Computers & operations research, vol.33, no.11, 3252-3269.

  41. Chen, H., Cheng, A.M.K., Kuo, Y.W.. Assigning real-time tasks to heterogeneous processors by applying ant colony optimization. Journal of parallel and distributed computing, vol.71, no.1, 132-142.

  42. Okulewicz, Michał, Mańdziuk, Jacek. The impact of particular components of the PSO-based algorithm solving the Dynamic Vehicle Routing Problem. Applied soft computing, vol.58, 586-604.

  43. Hannan, M.A., Akhtar, Mahmuda, Begum, R.A., Basri, H., Hussain, A., Scavino, Edgar. Capacitated vehicle-routing problem model for scheduled solid waste collection and route optimization using PSO algorithm. Waste management, vol.71, 31-41.

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