|
Reference
|
|
Allen, J., Browne, M., Woodburn, A., Leonardi, J. (2014) A review of urban consolidation centres in the supply chain based on a case study approach. Supply Chain Forum: An International Journal, 15(4): 100-112
|
|
Arvidsson, N., Browne, M. (2013) A review of the success and failure of tram systems to carry urban freight: The implications for a low emission intermodal solution using electric vehicles on trams. European Transport \Transport Europei, Vol. 54
|
1
|
Baum, L., Assmann, T., Strubelt, H. (2019) State of the art: Automated micro-vehicles for urban logistics. IFAC-PapersOnLine, 52(13), 2455-2462
|
1
|
Bibri, S.E., Krogstie, J. (2017) Smart sustainable cities of the future: An extensive interdisciplinary literature review. Sustainable Cities and Society, 31: 183-212
|
2
|
Browne, M., Allen, J., Leonardi, J. (2011) Evaluating the use of an urban consolidation centre and electric vehicles in central London. IATSS Research, 35(1): 1-6
|
|
Das, H.S., Tan, C.W., Yatim, A.H.M. (2017) Fuel cell hybrid electric vehicles: A review on power conditioning units and topologies. Renewable and Sustainable Energy Reviews, 76: 268-291
|
|
Diziain, D., Taniguchi, E., Dablanc, L. (2014) Urban logistics by rail and waterways in France and Japan. Procedia - Social and Behavioral Sciences, 125: 159-170
|
|
Fan, S., Peng, S., Liu, X. (2021) Can smart city policy facilitate the low-carbon economy in China? A quasi-natural experiment based on pilot city. Complexity, 2021: 1-15
|
|
Fatnassi, E., Chaouachi, J., Klibi, W. (2015) Planning and operating a shared goods and passengers on-demand rapid transit system for sustainable city-logistics. Transportation Research Part B: Methodological, 81(2): 440-460
|
1
|
Figliozzi, M.A. (2020) Carbon emissions reductions in last mile and grocery deliveries utilizing air and ground autonomous vehicles. Transportation research: Part D, Transport and environment, 85: 102443
|
1
|
Gianessi, P., Alfandari, L., Létocart, L., Wolfler, C.R. (2015) The multicommodity-ring location routing problem. Transportation Science, 50(2): 541-558
|
|
Giret, A., Carrascosa, C., Julian, V., Rebollo, M., Botti, V. (2018) A crowdsourcing approach for sustainable last mile delivery. Sustainability, 10(12): 4563-4563
|
|
González-Varona, J.M., Villafáñez, F., Acebes, F., Redondo, A., Poza, D. (2020) Reusing newspaper kiosks for last-mile delivery in urban areas. Sustainability, 12(22): 9770-9770
|
|
Hoffmann, T., Prause, G. (2018) On the regulatory framework for last-mile delivery robots. Machines, 6(3): 33-33
|
|
Huang, K., Ardiansyah, M.N. (2019) A decision model for last-mile delivery planning with crowdsourcing integration. Computers & Industrial Engineering, 135: 898-912
|
1
|
Janjevic, M., Ndiaye, A.B. (2014) Inland waterways transport for city logistics: A review of experiences and the role of local public authorities. WIT Transactions on the Built Environment, 138: 279-292
|
1
|
Janjević, M., Ndiaye, A.B. (2014) Development and Application of a Transferability Framework for Micro-Consolidation Schemes in Urban Freight Transport. Procedia: Social and Behavioral Sciences, 125: 284-296
|
1
|
Jeremić, M., Andrejić, M. (2019) Crowd Logistics: A New Concept in Realization of Logistics Services. u: Proceedings of the The 4th Logistics International Conference - LOGIC, Belgrade, 170-179
|
|
Jones, J., Genovese, A., Tob-Ogu, A. (2020) Hydrogen vehicles in urban logistics: A total cost of ownership analysis and some policy implications. Renewable and Sustainable Energy Reviews, 119: 109595-109595
|
|
Krstić, M., Tadić, S., Kovač, M., Roso, V., Zečević, S. (2021) A novel hybrid MCDM model for the evaluation of sustainable last mile solutions. Mathematical Problems in Engineering, 2021: 1-17
|
|
Lebeau, P., Verlinde, S., Macharis, C., van Mierlo, J. (2017) How can authorities support urban consolidation centres? A review of the accompanying measures. Journal of Urbanism: International Research on Placemaking and Urban Sustainability, 10(4): 468-486
|
|
Leyerer, M., Sonneberg, M.O., Heumann, M., Breitner, M.H. (2020) Shortening the last mile in urban areas: Optimizing a smart logistics concept for e-grocery operations. Smart Cities, 3(3): 585-603
|
1
|
Macharis, C., Kin, B. (2017) The 4 A's of sustainable city distribution: Innovative solutions and challenges ahead. International Journal of Sustainable Transportation, 11(2): 59-71
|
|
Pan, Y., Liang, C., Dong, L. (2019) A two-stage model for an urban underground container transportation plan problem. Computers & Industrial Engineering, 138: 106113-106113
|
|
Pimentel, C., Alvelos, F. (2018) Integrated urban freight logistics combining passenger and freight flows: Mathematical model proposal. Transportation Research Procedia, 30: 80-89
|
|
Quak, H., Nesterova, N., van Rooijen, T. (2016) Possibilities and barriers for using electric-powered vehicles in city logistics practice. Transportation Research Procedia, Vol. 12, pp. 157-169
|
|
Rai, H.B., Verlinde, S., Macharis, C. (2019) City logistics in an omnichannel environment: The case of Brussels. Case Studies on Transport Policy, 7(2): 310-317
|
1
|
Raicu, S., Costescu, D., Burciu, S. (2020) Distribution system with flow consolidation at the boundary of urban congested areas. Sustainability, Vol. 12, No. 3, 990
|
1
|
Strale, M. (2014) The Cargo Tram: Current Status and Perspectives, the Example of Brussels. u: Macharis C.; Melo S.; Woxenius J.; Van Lier T. [ur.] Sustainable Logistics, Emerald Group Publishing Limited, 245-263
|
|
Tadić, S., Krstić, M., Kovač, M. (2022) Assessment of city logistics initiative categories sustainability: Case of Belgrade. Environment, Development and Sustainability, 1-38
|
1
|
Tadić, S., Zečević, S. (2016) A framework for structuring city logistics initiatives. International journal for traffic and transport engineering, Vol.6, No. (3), pp. 243-252
|
|
Tadić, S., Veljović, M., Zečević, S. (2022) Crowd logistics: Household as a logistics service provider. International Journal for Traffic and Transport Engineering, 12(1): 111-122
|
|
Tadić, S., Krstić, M., Kovač, M., Brnjac, N. (2022) Evaluation of smart city logistics solutions. Promet - Traffic & Transportation, 34(5): 725-738
|
3
|
Tadić, S., Zečević, S., Krstić, M. (2014) A novel hybrid MCDM model based on fuzzy DEMATEL, fuzzy ANP and fuzzy VIKOR for city logistics concept selection. Expert Systems with Applications, 41(18): 8112-8128
|
1
|
Tadić, S., Zečević, S., Krstić, M. (2014) Ranking of Logistics System Scenarios for Central Business District. Promet - Traffic&Transportation, Vol. 26, No. 2, pp. 159-167
|
|
Tadić, S., Kovač, M., Čokorilo, O. (2021) The application of drones in city logistics concepts. Promet: Traffic&Transportation, 33(3): 451-462
|
1
|
Tadić, S.R., Zečević, S.M. (2015) Integrisano planiranje u cilju održivosti rešenja city logistike. Tehnika, vol. 70, br. 1, str. 164-173
|
|
Tadić, S.R., Zečević, S.M., Krstić, M.D. (2014) City logistics initiatives aimed at improving sustainability within existing context of urban area. Tehnika, vol. 69, br. 3, str. 487-495
|
|
Tadić, S.R., Zečević, S.M., Krstić, M.D. (2014) City logistics initiatives aimed at improving sustainability by changing the context of urban area. Tehnika, vol. 69, br. 5, str. 834-843
|
1
|
United Nations (2015) The 2030 agenda for sustainable development. Last accessed on 30.12.2022; Available online: https://www.un.org/sustainabledevelopment/development-agenda
|
|
Vakulenko, Y., Hellström, D., Hjort, K. (2018) What's in the parcel locker? Exploring customer value in e-commerce last mile delivery. Journal of Business Research, Vol. 88, pp. 421-427
|
|
van Duin, J.H.R., Wiegmans, B.W., van Arem, B., van Amstel, Y. (2020) From home delivery to parcel lockers: A case study in Amsterdam. Transportation Research Procedia, Vol. 46, pp. 37-44
|
1
|
van Duin, R., Wiegmans, B., Tavasszy, L., Hendriks, B., He, Y. (2019) Evaluating new participative city logistics concepts: The case of cargo hitching. Transportation Research Procedia, 39: 565-575
|
|
van Heeswijk, W., Larsen, R., Larsen, A. (2019) An urban consolidation center in the city of Copenhagen: A simulation study. International Journal of Sustainable Transportation, 13(9): 675-691
|
|
Wang, Y., Zhang, D., Liu, Q., Shen, F., Lee, L.H. (2016) Towards enhancing the last-mile delivery: An effective crowd-tasking model with scalable solutions. Transportation Research Part E: Logistics and Transportation Review, 93: 279-293
|
|
Wojewódzka-Król, K., Rolbiecki, R. (2019) The role of inland waterway transport in city logistics. Transport Economics and Logistics, 84: 103-114
|
1
|
Zych, M. (2014) Identification of Potential Implementation of the Cargo Tram in Warsaw: A First Overview. Procedia: Social and Behavioral Sciences, 151: 360-369
|
|
|
|