Developing a Vehicle Re-routing Algorithm using Connected Vehicle (CV) Technology
Mao Ye, Nicolette Formosa, Mohammed Quddus

TL;DR
This paper presents an intelligent re-routing algorithm for connected vehicles that improves traffic flow and safety during breakdowns by leveraging V2X communication technology within a simulated environment.
Contribution
It introduces a novel proactive re-routing algorithm utilizing V2X communication to mitigate congestion and enhance safety during vehicle breakdowns in simulated traffic scenarios.
Findings
V2X-enabled re-routing reduces congestion during breakdowns.
The algorithm improves safety by smoothing vehicle accelerations.
Traffic efficiency is enhanced with low infrastructure costs.
Abstract
Vehicle Ad-hoc Networks (VANETs) act as the core of vehicular communications and provide the fundamental wireless communication architecture to support both vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication. Therefore, by leveraging only communication technologies, Connected Vehicles (CVs) can navigate through the dynamic road network. However, such vehicles are still in their infancy but are expected to have a significant impact on safety and mobility such as reducing non-recurrent congestion in case of a vehicle breakdown or other roadway incidents. To evaluate their impacts, this research examines the benefits of having CVs when a vehicle breakdown occurs by developing an intelligent proactive re-routing algorithm. Due to a lack of real-world data, this paper adopts an integrated simulated framework consisting of a V2X (OMNET++) communication simulator and a…
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Taxonomy
TopicsVehicular Ad Hoc Networks (VANETs) · Opportunistic and Delay-Tolerant Networks · Traffic control and management
