
Connected Vehicles Improve Traffic Flow, While Automated Vehicles Slow It Down
A recent study reveals that vehicles that wirelessly communicate with each other, known as “connected” vehicles, considerably enhance the flow of traffic at intersections. However, automated vehicles that don’t communicate with each other can actually slow down travel time through intersections. The culprit? Safety.
“There are two significant reasons that people are interested in automated vehicles – improving passenger safety and reducing travel time,” says Ali Hajbabaie, first author of a paper on the work and an associate professor of civil, construction, and environmental engineering at North Carolina State University.
“There is a lot of research showing that automated vehicles can improve safety. But our research here – which relies on computational modeling – suggests that if we want to also improve travel time, an increase in automated vehicles isn’t enough; we need vehicles that are capable of communicating with each other and with the traffic-control systems that manage traffic flow at intersections.”
For the study, the researchers used a computational model that simulates traffic conditions. The researchers accounted for four types of vehicles: human-driven vehicles (HVs); connected vehicles (CVs) – which are driven by humans, but share information with other connected vehicles and with the control system that manages traffic lights; automated vehicles (AVs); and connected automated vehicles (CAVs).
Why Connected Vehicles Improve Traffic Flow
“Because of their programming, AVs are assumed to move more cautiously compared to human drivers,” Hajbabaie says. “Their safety stems, in part, from their being programmed to drive conservatively. CVs and CAVs are designed to receive information about the future state of traffic lights and adjust their speeds to avoid stopping at intersections. As a result, the movement of CVs and CAVs is expected to be smoother – and have a lower number of stops – than HVs and AVs.”
The researchers ran 57 traffic simulations to assess the impact of a host of variables on travel time through an intersection. For example, the researchers looked at how traffic would be affected by various combinations of HVs, AVs, CVs, and CAVs.
One clear takeaway was that the higher the percentage of CVs and CAVs, the greater the intersection capacity. In other words, when more vehicles on the road were connected, more vehicles could flow through the intersection more quickly. Higher capacity also means that, on average, you have fewer vehicles sitting in line at a red light.
The Downside of Automated Vehicles Without Connectivity
“However, we found that higher percentages of AVs – which are not connected – actually slow travel times through intersections,” Hajbabaie says. “This is because those AVs are programmed to drive conservatively in order to reduce the risk of collisions. Our findings underscore the importance of incorporating connectivity into both vehicles and traffic control systems.
“This study was conducted using a computational model, which is a limiting factor,” Hajbabaie says. “However, it’s difficult and expensive to assemble a mixed fleet of HVs, AVs, CVs, and CAVs in a connected traffic-control system. Field tests involving human drivers can also raise safety concerns, making these modeling studies particularly important; we want to identify potential problems now, and not when real lives are at stake.”
Reference: “Effects of Connectivity and Automation on Saturation Headway and Capacity at Signalized Intersections” by Ali Hajbabaie, Mehrdad Tajalli and Eleni Bardaka, 11 August 2023, Transportation Research Record: Journal of the Transportation Research Board.
DOI: 10.1177/03611981231187386
This research was done with support from the North Carolina Department of Transportation.
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1 Comment
This study sheds light on how essential vehicle communication is for improving traffic flow, especially at intersections. Connected vehicles (CVs) and connected automated vehicles (CAVs) have the advantage of syncing with traffic control systems, resulting in fewer stops and a smoother ride through busy intersections. In contrast, automated vehicles (AVs), which lack this communication, tend to drive more cautiously, slowing down travel time. As the future of transportation moves toward more automation, it’s clear that integrating connectivity with traffic systems will be key to reducing congestion. If you’re thinking about upgrading to a connected vehicle or checking the status of your current one, you can always start with a VIN https://www.faxvin.com/vin-check/locator check to ensure your car is ready for the evolving road systems.