V2N-Based Algorithm and Communication Protocol for Autonomous Non-Stop Intersections

Fuente: arXiv
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Main Authors: Farina, Lorenzo, Amorosa, Lorenzo Mario, Rapelli, Marco, Masini, Barbara Maví, Casetti, Claudio, Bazzi, Alessandro
Format: Preprint
Published: 2026
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author Farina, Lorenzo
Amorosa, Lorenzo Mario
Rapelli, Marco
Masini, Barbara Maví
Casetti, Claudio
Bazzi, Alessandro
author_facet Farina, Lorenzo
Amorosa, Lorenzo Mario
Rapelli, Marco
Masini, Barbara Maví
Casetti, Claudio
Bazzi, Alessandro
contents Intersections are critical areas for road safety and traffic efficiency, accounting for a significant portion of vehicle crashes and fatalities. While connected and autonomous vehicle (CAV) technologies offer a promising solution for autonomous intersection management, many existing proposals either rely on computationally heavy centralized controllers or overlook the practical impairments of real-world communication networks. This paper introduces seamless mobility of vehicles over intersections (Moveover), a novel algorithm comprising a vehicle-to-network (V2N) communication protocol designed to let vehicles cross autonomous intersections without stopping. Moveover delegates trajectory and speed profile selection to individual vehicles, allowing each CAV to optimize them according to its unique kinematic characteristics. Simultaneously, a local intersection controller prevents collisions through deterministic conflict zone reservations. The algorithm is rigorously evaluated under both ideal and non-ideal networking conditions, specifically modeling 4G and 5G communication delays, across multiple layouts including single-lane, multi-lane, and roundabouts. Furthermore, we test Moveover on a real urban map with multiple intersections. Simulation results demonstrate that Moveover significantly outperforms baseline strategies, offering substantial improvements in travel times and reduced pollutant emissions.
format Preprint
id arxiv_https___arxiv_org_abs_2603_05165
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle V2N-Based Algorithm and Communication Protocol for Autonomous Non-Stop Intersections
Farina, Lorenzo
Amorosa, Lorenzo Mario
Rapelli, Marco
Masini, Barbara Maví
Casetti, Claudio
Bazzi, Alessandro
Networking and Internet Architecture
Intersections are critical areas for road safety and traffic efficiency, accounting for a significant portion of vehicle crashes and fatalities. While connected and autonomous vehicle (CAV) technologies offer a promising solution for autonomous intersection management, many existing proposals either rely on computationally heavy centralized controllers or overlook the practical impairments of real-world communication networks. This paper introduces seamless mobility of vehicles over intersections (Moveover), a novel algorithm comprising a vehicle-to-network (V2N) communication protocol designed to let vehicles cross autonomous intersections without stopping. Moveover delegates trajectory and speed profile selection to individual vehicles, allowing each CAV to optimize them according to its unique kinematic characteristics. Simultaneously, a local intersection controller prevents collisions through deterministic conflict zone reservations. The algorithm is rigorously evaluated under both ideal and non-ideal networking conditions, specifically modeling 4G and 5G communication delays, across multiple layouts including single-lane, multi-lane, and roundabouts. Furthermore, we test Moveover on a real urban map with multiple intersections. Simulation results demonstrate that Moveover significantly outperforms baseline strategies, offering substantial improvements in travel times and reduced pollutant emissions.
title V2N-Based Algorithm and Communication Protocol for Autonomous Non-Stop Intersections
topic Networking and Internet Architecture
url https://arxiv.org/abs/2603.05165