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Electrifying Last-Mile Deliveries: A Carbon Footprint Comparison between Internal Combustion Engine and Electric Vehicles.

, , , и . Smart-CT, том 9704 из Lecture Notes in Computer Science, стр. 76-84. Springer, (2016)

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Electrifying Last-Mile Deliveries: A Carbon Footprint Comparison between Internal Combustion Engine and Electric Vehicles., , , и . Smart-CT, том 9704 из Lecture Notes in Computer Science, стр. 76-84. Springer, (2016)Considering Congestion Costs and Driver Behaviour into Route Optimisation Algorithms in Smart Cities., , , и . Smart-CT, том 10268 из Lecture Notes in Computer Science, стр. 39-50. Springer, (2017)A Hybrid Modeling Approach for Automated Parcel Lockers as a Last-Mile Delivery Scheme: A Case Study in Pamplona (Spain)., , , , , и . WSC, стр. 1-12. IEEE, (2021)Agent-Based Simulation Improves e-grocery Deliveries Using Horizontal Cooperation., , , и . WSC, стр. 1242-1253. IEEE, (2020)A Dynamic Forecast Demand Scenario Analysis to Design an Automated Parcel Lockers Network in Pamplona (Spain) Using a Simulation-Optimization Model., , , и . WSC, стр. 1759-1770. IEEE, (2023)Agent-based modelling and simulation for hub and electric last mile distribution in Vienna., , , и . ANT/EDI40, том 220 из Procedia Computer Science, стр. 718-723. Elsevier, (2023)Urban e-Grocery Distribution Design in Pamplona (Spain) Applying an Agent-Based Simulation Model with Horizontal Cooperation Scenarios., , , и . Algorithms, 14 (1): 20 (2021)A Simulation-Optimization Model for Automated Parcel Lockers Network Design in Urban Scenarios in Pamplona (Spain), Zakopane, and Krakow (Poland)., , , и . WSC, стр. 1648-1659. IEEE, (2022)Exploring the Use of Urban Consolidation Centers for Efficient Last-Mile Delivery Using Agent Based Modelling and Simulation., , , и . Simul. Notes Eur., 34 (3): 181-184 (2024)