A Quantum-Inspired Ant Colony Optimization Algorithm for Parking Lot Rental to Shared E-Scooter Services

Author:

Nardin Antonella1ORCID,D’Andreagiovanni Fabio2ORCID

Affiliation:

1. Department of Engineering, Università degli Studi Roma Tre, Via Vito Volterra 62, 00146 Roma, Italy

2. Department of Sciences and Methods for Engineering, University of Modena and Reggio Emilia, Via Giovanni Amendola 2, 42122 Reggio Emilia, Italy

Abstract

Electric scooter sharing mobility services have recently spread in major cities all around the world. However, the bad parking behavior of users has become a major source of issues, provoking accidents and compromising urban decorum of public areas. Reducing wild parking habits can be pursued by setting reserved parking spaces. In this work, we consider the problem faced by a municipality that hosts e-scooter sharing services and must choose which locations in its territory may be rented as reserved parking lots to sharing companies, with the aim of maximizing a return on renting and while taking into account spatial consideration and parking needs of local residents. Since this problem may result difficult to solve even for a state-of-the-art optimization software, we propose a hybrid metaheuristic solution algorithm combining a quantum-inspired ant colony optimization algorithm with an exact large neighborhood search. Results of computational tests considering realistic instances referring to the Italian capital city of Rome show the superior performance of the proposed hybrid metaheuristic.

Publisher

MDPI AG

Reference51 articles.

1. Federal Highway Administration United States Department of Transportation (2023, December 31). Shared Mobility: Current Practices and Guiding Principles, Available online: https://ops.fhwa.dot.gov/publications/fhwahop16022/fhwahop16022.pdf.

2. Getting smart about urban mobility-aligning the paradigms of smart and sustainable;Lyons;Transp. Res. Part A Policy Pract.,2018

3. Carsharing and personal vehicle services: Worldwide market developments and emerging trends;Shaheen;Int. J. Sustain. Transp.,2013

4. Measuring the car ownership impact of free-floating car-sharing—A case study in Basel, Switzerland;Becker;Transport. Res. D,2018

5. Turoń, K., Kubik, A., and Chen, F. (2021). When, What and How to Teach about Electric Mobility? An Innovative Teaching Concept for All Stages of Education: Lessons from Poland. Energies, 14.

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