Find the february list below and attached in Bibtex.
Note that some of the most recent ones are still only online.
Prof. Em. Frank Plastria
[1] |
Marta Baldomero‐Naranjo, Jörg Kalcsics, and Antonio M. Rodríguez‐Chía. On the complexity of the upgrading version of the maximal covering location problem. Networks, January 2024. [ DOI ]
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[2] |
Arup Kumar Bhattacharjee and Anirban Mukhopadhyay. A multiobjective evolutionary approach to solving single-allocation hub median problem. January 2024. [ DOI ]
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[3] |
Victor Bucarey, Natividad González-Blanco, Martine Labbé, and Juan A. Mesa. On λ-cent-dians and generalized-center for network design. SSRN Electronic Journal, 2024. [ DOI ]
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[4] |
Maryam Gharegozlu, Abdolsalam Ghaderi, and Amir Hossein Seddighi. Location-pricing problem in a two-echelon supply chain: A behavioral game-theoretic approach. Computers & Operations Research, 163:106486, March 2024. [ DOI ]
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[5] |
Martin P. Kidd, Maryam Darvish, Leandro C. Coelho, and Bernard Gendron. A relax-and-restrict matheuristic for supply chain network design with facility location and customer due date flexibility. Transportation Research Part E: Logistics and Transportation
Review, 182:103370, February 2024. [ DOI ] |
[6] |
Hongming Li, Erick Delage, Ning Zhu, Michael Pinedo, and Shoufeng Ma. Distributional robustness and inequity mitigation in disaster preparedness of humanitarian operations. Manufacturing & Service Operations Management, 26(1):197--214, January 2024.
[ DOI ] |
[7] |
Mohammad Lotfi and Alexandros A. Voudouris. On truthful constrained heterogeneous facility location with max-variant cost. Operations Research Letters, 52:107060, January 2024. [ DOI ]
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[8] |
C.L. Martins and M.V. Pato. Decomposition heuristics for multiobjective problems. the food bank network redesign case. International Journal of Production Economics, 268:109121, February 2024. [ DOI ]
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[9] |
Maria Michopoulou and Ioannis Giannikos. Discrete cooperative coverage location models with alternative facility types in a probabilistic setting. International Transactions in Operational Research, January 2024. [ DOI ]
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[10] |
Juan M. Muñoz-Ocaña, Justo Puerto, and Antonio M. Rodríguez-Chía. Improved heuristics for solving large-scale scanning transmission electron microscopy image segmentation using the ordered median problem. Computers & Operations Research, 163:106524,
March 2024. [ DOI ] |
[11] |
Xinqiang Qian, Xiucui Guan, Junhua Jia, and Panos M. Pardalos. Inverse vertex/absolute quickest 1-center location problem on a tree under weighted l1 norm. Journal of Optimization
Theory and Applications, 200(2):524--554, January 2024. [ DOI ] |
[12] |
Šárka Štádlerová, Peter Schütz, and Asgeir Tomasgard. Multi-period facility location and capacity expansion with modular capacities and convex short-term costs. Computers & Operations Research, 163:106395, March 2024. [ DOI ]
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[13] |
Christian Straubert. A continuous approximation location-inventory model with exact inventory costs and nonlinear delivery lead time penalties. International Journal of Production Economics, 268:109092, February 2024. [ DOI ]
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[14] |
Tao Wu. Exact method for production hub location. INFORMS Journal on Computing, February 2024. [ DOI ] |
[15] |
R. Cory Allen, Styliani Avraamidou, Sergiy Butenko, and Efstratios N. Pistikopoulos. Solution strategies for integrated distribution, production, and relocation problems arising in modular manufacturing. European Journal of Operational Research,
September 2023. [ DOI ] |
[16] |
Ketan Date and Rakesh Nagi. Optimal and heuristic solutions for placing multiple finite-size rectangular facilities in an existing layout. International Journal of Production Research, 62(1–2):24--44, November 2023. [ DOI ]
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[17] |
Ketan Date and Rakesh Nagi. Optimal placement of multiple finite-size rectangular facilities in an existing layout. International Journal of Production Research, 62(1–2):7--23, November 2023. [ DOI ]
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[18] |
Nhat-Minh Le-Phan, Minh Hoang Trinh, and Phuoc Doan Nguyen. Dimensional lifting, finite-time convergence, and bearing-only algorithms for the fermat-weber location problem. In 2023 12th International Conference on Control, Automation and Information
Sciences (ICCAIS). IEEE, November 2023. [ DOI ] |
[19] |
Wenfei Li, Jinwu Gao, and Yicong Mao. An α-risk appetite cost minimizing model for multi-commodity capacitated p-hub median problem with time windows and uncertain flows.
Annals of Operations Research, 333(1):79--121, July 2023. [ DOI ]
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[20] |
Renan Paula Ramos Moreno, Rui Borges Lopes, José António de Vasconcelos Ferreira, Ana Luísa Ferreira Andrade Ramos, and Diogo Correia. Transshipment Location Problem: A Bibliometric Review, pages 1057--1065. Springer Nature Switzerland, August 2023.
[ DOI ] |
[21] |
Dalibor Ristić, Nenad Mladenović, Mustapha Ratli, Raca Todosijević, and Dragan Urošević. Auxiliary data structures and techniques to speed up solving of the p-next center problem:
A VNS heuristic. Applied Soft Computing, page 110276, apr 2023. [ DOI ]
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[22] |
E. Powell Robinson, Funda Sahin, and Li-Lian Gao. Network design with consideration of hours-of-service regulation and drop-and-swap trailer operations. Decision Sciences, jul 2023. [ DOI ]
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[23] |
Oscar Rodríguez-Espíndola. Two-stage stochastic formulation for relief operations with multiple agencies in simultaneous disasters. OR Spectrum, 45(2):477--523, jan 2023. [ DOI ]
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[24] |
Oscar Rodríguez-Espíndola, Hossein Ahmadi, Diego Gastélum-Chavira, Omar Ahumada-Valenzuela, Soumyadeb Chowdhury, Prasanta Kumar Dey, and Pavel Albores. Humanitarian logistics optimization models: An investigation of decision-maker involvement and directions
to promote implementation. Socio-Economic Planning Sciences, 89:101669, oct 2023. [ DOI ] |
[25] |
Mikael Rönnqvist, Patrik Flisberg, Mikael Frisk, David Bredström, and Jean‐Baptiste Paradis. A new hybrid method for quick and accurate calculation of forest transportation distances. International Transactions in Operational Research, 31(3):1397--1425,
November 2023. [ DOI ] |
[26] |
Edith Salinas, José-Fernando Camacho-Vallejo, and Samuel Nucamendi-Guillén. A bi-level vaccination points location problem that aims at social distancing and equity for the inhabitants. Axioms, 12(3):305, mar 2023. [ DOI ]
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[27] |
Gonçalo Gonçalves Duarte Santos, Sebastian Birolini, and Gonçalo Homem de Almeida Correia. A space-time-energy flow-based integer programming model to design and operate a regional shared automated electric vehicle (SAEV) system and corresponding charging
network. Transportation Research Part C: Emerging Technologies, 147:103997, feb 2023. [ DOI ] |
[28] |
Dolores R. Santos-Peñate, Rafael R. Suárez-Vega, and Carmen Florido de la Nuez. A location-allocation model for bio-waste management in the hospitality sector. Networks and Spatial Economics, 23(3):611--639, jun 2023. [ DOI ]
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[29] |
Fatemeh Sarayloo, Teodor Gabriel Crainic, and Walter Rei. An integrated learning and progressive hedging matheuristic for stochastic network design problem. Journal of Heuristics, 29(4-6):409--434, aug 2023. [ DOI ]
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[30] |
Carsten R. Seemann, Vincent Moulton, Peter F. Stadler, and Marc Hellmuth. Planar median graphs and cubesquare-graphs. Discrete Applied Mathematics, 331:38--58, may 2023. [ DOI ]
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[31] |
Bonn Kleiford Seranilla and Nils Löhndorf. Optimizing vaccine distribution in developing countries under natural disaster risk. Naval Research Logistics (NRL), 71(1):140--157, August 2023. [ DOI ]
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[32] |
Aidin Shaghaghi, Mohammad Taghitahooneh, and Reza Dashti. Determining the location of spare and mobile transformers in distribution networks. Electrical Engineering, November 2023. [ DOI ]
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[33] |
Karmel S. Shehadeh. Reducing disparities in transportation distance in a stochastic facility location problem. Transportation Research Part C: Emerging Technologies, 153:104199, aug 2023. [ DOI ]
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[34] |
Mahnaz Sheikholeslami and Naeme Zarrinpoor. Designing an integrated humanitarian logistics network for the preparedness and response phases under uncertainty. Socio-Economic Planning Sciences, 86:101496, apr 2023. [ DOI ]
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[35] |
Saber Shiripour, Milad Hematian, and Nezam Mahdavi-Amiri. A robust optimization model for dynamic virtual hub location problem under uncertainty using an M/M/C/K queuing model: two metaheuristic algorithms. Operational Research, 23(3), jun 2023.
[ DOI ] |
[36] |
André Snoeck, Matthias Winkenbach, and Jan C. Fransoo. On-demand last-mile distribution network design with omnichannel inventory. Transportation Research Part E: Logistics and Transportation Review, 180:103324, December 2023. [ DOI ]
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[37] |
Maocan Song, Lin Cheng, and Yibei Zhang. Joint location optimization of charging stations and segments in the space-time-electricity network: An augmented lagrangian relaxation and ADMM-based decomposition scheme. Computers & Industrial Engineering,
183:109517, sep 2023. [ DOI ] |
[38] |
Francesco Betti Sorbelli, Cristina M. Pinotti, and Giulio Rigoni. On the evaluation of a drone-based delivery system on a mixed euclidean-manhattan grid. IEEE Transactions on Intelligent Transportation Systems, 24(1):1276--1287, jan 2023. [ DOI ]
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[39] |
Valeria Soto-Mendoza, Efraín Ruiz y Ruiz, Irma García-Calvillo, Samuel Nucamendi-Guillén, and Yajaira Cardona-Valdés. A location-routing problem for local supply chains. Computers & Industrial Engineering, 183:109528, sep 2023. [ DOI ]
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[40] |
Sandy Spiers, Hoa T. Bui, and Ryan Loxton. An exact cutting plane method for the euclidean max-sum diversity problem. European Journal of Operational Research, 311(2):444--454, dec 2023. [ DOI ]
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[41] |
Stefan Steinerberger. Sums of distances on graphs and embeddings into euclidean space. Mathematika, 69(3):600--621, apr 2023. [ DOI ] |
[42] |
Patrick Stokkink and Nikolas Geroliminis. A continuum approximation approach to the depot location problem in a crowd-shipping system. Transportation Research Part E: Logistics and Transportation Review, 176:103207, aug 2023. [ DOI ]
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[43] |
Shilpa Sunil and Sanjeev Patel. Energy-efficient virtual machine placement algorithm based on power usage. Computing, 105(7):1597--1621, feb 2023. [ DOI ]
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[44] |
Hendri Sutrisno and Chao-Lung Yang. A two-echelon location routing problem with mobile satellites for last-mile delivery: mathematical formulation and clustering-based heuristic method. Annals of Operations Research, 323(1-2):203--228, jan 2023.
[ DOI ] |