MAROSYJun 15, 2021

Future urban mobility as a bio-inspired collaborative system of multi-functional autonomous vehicles

arXiv:2106.09543v2
Originality Incremental advance
AI Analysis

This addresses urban mobility inefficiencies for city planners and residents, but it is an incremental vision based on existing swarm robotics concepts.

The paper tackles the challenge of efficient urban mobility under urbanization and climate change by proposing a future system of shared, electric, autonomous vehicles that collaborate like natural swarms, aiming to enhance flexibility, scalability, and robustness in transportation.

The fast urbanization and climate change challenges require solutions that enable the efficient movement of people and goods in cities. We envision future cities to be composed of high-performing walkable districts where transportation needs could be served by fleets of ultra-lightweight shared and autonomous vehicles. A future in which most vehicles would be autonomous creates a new paradigm for the possible interactions between vehicles. Natural swarms are a great example of how rich interactions can be; they can divide tasks, cluster, build together, or transport cooperatively. The field of swarm robotics has translated some of the behaviors from natural swarms to artificial systems, proving to make systems more flexible, scalable, and robust. Inspired by nature and supported by swarm robotics, this paper proposes a future mobility in which shared, electric, and autonomous vehicles would be multi-functional and behave as a collaborative system. In this future, fleets of multi-functional vehicles would complete different tasks collaboratively, giving a response to the different urban mobility needs. This paper contributes with the proposal of a framework for future urban mobility that integrates current research and mobility trends in a novel and unique way.

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