Skip to main content

Intelligent lane control signals help direct driver behaviour

As part of a larger effort exploring the effects of roadway signage on driver behaviour, researchers from the University of Minnesota College of Design have conducted a study on the effectiveness of intelligent lane control signals (ILCS). During the study, was funded by the Minnesota Department of Transportation (MnDOT), the research team used a driving simulator to test ILCS that displayed merge, speed control, and lane-closure warnings over freeway lanes. The researchers were specifically interested in d
November 21, 2012 Read time: 3 mins
As part of a larger effort exploring the effects of roadway signage on driver behaviour, researchers from the University of Minnesota College of Design have conducted a study on the effectiveness of intelligent lane control signals (ILCS).

During the study, was funded by the 2103 Minnesota Department of Transportation (MnDOT), the research team used a driving simulator to test ILCS that displayed merge, speed control, and lane-closure warnings over freeway lanes. The researchers were specifically interested in determining which type of merge signs - diagonal arrows, words, or dynamic chevrons - had the most effect on drivers’ behaviour.

Study participants drove on a six-lane divided highway in a driving simulator, where they were presented with five sets of ILCS prompting them to reduce their speed and merge out of the centre lane. The researchers collected lane position and driving speed data from each participant to determine how effectively the signs conveyed their intended messages.

Overall results indicate that the ILCS are effective at directing driver behaviour. Most participants reduced their speed when they approached the speed signs, and the majority of drivers merged out of the centre lane as they approached the first ILCS displaying a lane closure warning.

“This research allowed MnDOT to determine how well motorists understand the messages used on our ILCS,” says Brian Kary, freeway operations engineer at MnDOT. “The Active Traffic Management System on I-35W is one of the first in the nation, so there had been little guidance as to the types of messages to display.”

Specifically, the researchers found that drivers responded to the diagonal arrow merge signs much earlier than to the merge signs with words or chevrons. Participants changed lanes 266 feet before reaching the arrow merge sign, compared to 123 feet before the chevron and 54 feet before the words. The simplicity of the arrow sign was probably a factor, the researchers say. The arrow was larger and simpler than the other two sign types and likely took less time for drivers to process.

The study also included a survey that asked participants for their opinions of ILCS and other changeable message signs. Most participants had positive opinions of the signs, particularly those that display information on travel time, traffic problems, and roadway maintenance schedules.

For more information on companies in this article

Related Content

  • Milwaukee’s bus service offers jobs lifeline
    November 23, 2018
    A bus-to-jobs project in Milwaukee provides a useful service for low-paid workers. A new report shows the economic impact of potential closure on local employers - and demonstrates the importance of public transit networks for disadvantaged communities The city of Milwaukee, Wisconsin, has a problem. Getting people into out-of-town districts for work is an engine of economic growth, but it costs money. The Milwaukee County Transit System (MCTS) bus routes 6 and 61 - also known as JobLines - provide acces
  • Cellint measures speed and travel time without roadside infrastructure
    April 10, 2014
    Collecting speed and travel time data without using roadside infrastructure could offer new possibilities to cash-strapped road authorities. Streaming video may be useful for traffic controllers to monitor incidents and automatic number plate recognition may be required for enforcement, but neither are necessary for many ITS functions. For instance travel times, tailbacks, percentage of vehicles turning, origin and destination analysis can all be done using Bluetooth and/or WI-Fi sensors and without video o
  • US to field trial connected vehicle technology
    April 17, 2012
    The US Department of Transportation (DOT) has announced that the University of Michigan will conduct a road safety field trial in Ann Arbor, Michigan, which will include the installation of wireless devices in up to 3,000 vehicles in one location, to evaluate the effectiveness of connected vehicle technology to prevent crashes.
  • Intelematics charts intersection congestion drop
    May 13, 2020
    Intelematics' qualitative data has highlighted that there were fewer snarl-ups at Melbourne's improved Hoddle Street continuous-flow intersection.