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Routing Control Optimization for Autonomous Vehicles in Mixed Traffic Flow Based on Deep Reinforcement Learningopen access

Authors
Moon, SungwonKoo, SeolwonLim, YujinJoo, Hyunjin
Issue Date
Mar-2024
Publisher
MDPI
Keywords
vehicle routing control; deep reinforcement learning; deep Q-network; autonomous vehicle; traffic flow
Citation
APPLIED SCIENCES-BASEL, v.14, no.5
Journal Title
APPLIED SCIENCES-BASEL
Volume
14
Number
5
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/159783
DOI
10.3390/app14052214
ISSN
2076-3417
2076-3417
Abstract
With recent technological advancements, the commercialization of autonomous vehicles (AVs) is expected to be realized soon. However, it is anticipated that a mixed traffic of AVs and human-driven vehicles (HVs) will persist for a considerable period until the Market Penetration Rate reaches 100%. During this phase, AVs and HVs will interact and coexist on the roads. Such an environment can cause unpredictable and dynamic traffic conditions due to HVs, which results in traffic problems including traffic congestion. Therefore, the routes of AVs must be controlled in a mixed traffic environment. This study proposes a multi-objective vehicle routing control method using a deep Q-network to control the driving direction at intersections in a mixed traffic environment. The objective is to distribute the traffic flow and control the routes safely and efficiently to their destination. Simulation results showed that the proposed method outperformed existing methods in terms of the driving distance, time, and waiting time of AVs, particularly in more dynamic traffic environments. Consequently, the traffic became smooth as it moved along optimal routes.
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