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Impact of Mobility-on-Demand on Traffic Congestion: Simulation-based Study

2017/08/08 by David Fiedler, Fiedler, David, Michal Čáp +3
Computer Science · Engineering · Social Sciences · #Smart Parking Systems Research #Transportation Planning and Optimization #Transportation and Mobility Innovations #cs.MA

paper · pdf · doi:10.48550/arxiv.1708.02484

accepted for ITSC 2017

arxiv created 2017/08/08 · arxiv updated 2017/08/09

Abstract

The increasing use of private vehicles for transportation in cities results in a growing demand for parking space and road network capacity. In many densely populated urban areas, however, the capacity of existing infrastructure is insufficient and extremely difficult to expand. Mobility-on-demand systems have been proposed as a remedy to the problem of limited parking space because they are able to satisfy the existing transportation demand with fewer shared vehicles and consequently require less parking space. Yet, the impact of large-scale vehicle sharing on traffic patterns is not well understood. In this work, we perform a simulation-based analysis of consequences of a hypothetical deployment of a large-scale station-based mobility-on-demand system in Prague and measure the traffic intensity generated by the system and its effects on the formation of congestion. We find that such a mobility-on-demand system would lead to significantly increased total driven distance and it would also increase levels of congestion due to extra trips without passengers. In fact, 38% kilometers traveled in such an MoD system would be driven empty.

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