Optimizing Vehicle Replacement in Sustainable Urban Freight Transportation Subject to Presence of Regulatory Measures

Author:

Ahani Parisa1,Arantes Amílcar1ORCID,Garmanjani Rohollah2,Melo Sandra3ORCID

Affiliation:

1. CERIS, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais 1, 1049-001 Lisboa, Portugal

2. Center for Mathematics and Applications (NOVA Math), FCT NOVA, 2829-516 Caparica, Portugal

3. CEiiA, Center of Engineering and Development, Av. Dom Afonso Henriques 1825, 4450-017 Matosinhos, Portugal

Abstract

Since the 1990s, studies and pilot tests have been conducted to reduce traffic, accidents, and pollution due to urban freight transport (UFT). These ended up in several policies, regulations, and restrictions for UFT, such as low emission zones, delivery time windows, and vehicle size and weight restrictions. However, issues in UFT under regulatory measures still persist. This study introduces an optimization framework for deriving an optimal combination of various types of vehicles with different capacities for vehicle replacement with UFT. This framework allows an understanding of how an urban freight company with a limited budget efficiently satisfies its freight demand within an urban area in the presence of regulatory measures by urban administrators. The introduced formulation, which is mixed-integer linear programming, will assist the operator in choosing the best investment strategy for introducing new vehicles of certain types and sizes, for operation in different zones, into its fleet while gaining economic benefits and having a positive impact on the liveability of the urban area. Furthermore, an elasticity analysis is performed to consider the effects of specific uncertain parameters on the total cost. The numerical results show that the share of electric vehicles in the fleet increases, and they are more competitive than diesel vehicles.

Funder

FCT—Fundação para a Ciencia e Tecnologia

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference55 articles.

1. (2020, June 09). European Commission Urbanisation Worldwide. Available online: https://knowledge4policy.ec.europa.eu/foresight/topic/continuing-urbanisation/urbanisation-worldwide_en.

2. Measuring Delivery Route Cost Trade-offs between Electric-Assist Cargo Bicycles and Delivery Trucks in Dense Urban Areas;Sheth;Eur. Transp. Res. Rev.,2019

3. Bosona, T. (2020). Urban Freight Last Mile Logistics—Challenges and Opportunities to Improve Sustainability: A Literature Review. Sustainability, 12.

4. City Logistics, Urban Goods Distribution and Last Mile Delivery and Collection;Cardenas;Compet. Regul. Netw. Ind.,2017

5. E-Fulfilment and Distribution in Omni-Channel Retailing: A Systematic Literature Review;Melacini;Int. J. Phys. Distrib. Logist. Manag.,2018

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