Driver braking behavior was analyzed using time-series recordings from naturalistic rear-end conflicts (116 crashes and 241 near-crashes), including events with and without visual distraction among drivers of cars, heavy trucks, and buses. A simple piecewise linear model could be successfully fitted, per event, to the observed driver decelerations, allowing a detailed elucidation of when drivers initiated braking and how they controlled it. Most notably, it was found that, across vehicle types, driver braking behavior was strongly dependent on the urgency of the given rear-end scenario\u27s kinematics, quantified in terms of visual looming of the lead vehicle on the driver\u27s retina. In contrast with previous suggestions of brake reaction...
This driving simulator study, conducted as part of the EU AdaptIVe project, investigated drivers’ pe...
The National Transportation Safety Board (NTSB) estimates that 80% of the deaths and injuries result...
Driving is a task that requires the timely detection of critical events and relevant changes in traf...
Driver braking behavior was analyzed using time-series recordings from naturalistic rear-end conflic...
This paper develops driver reaction-time models for car-following analysis based on human factors. T...
Rear-end collisions are often quoted as being a major cause of road traffic accidents. In response t...
Previous studies have shown the effect of a lead vehicle’s speed, deceleration rate and headway dist...
Rear-end crashes are common accident scenarios and account for approximately 30% of all police-repor...
Considering the large proportion of rear-end collisions occurring in our daily life and the severity...
Until recently, little has been known about what exactly happens in the seconds leading up to a car ...
Brake Reaction Time (BRT) is an important parameter for road safety. Previous research has shown tha...
Road safety is affected by human factors. This should suggest to engineers that driver’s behaviour h...
This study assessed the ability of drivers to detect the deceleration of a preceding vehicle in a si...
This study used a video-based braking simulation dual task to carry out a preliminary evaluation of ...
Driving has become an integral part of our daily lives, and so too have the dangers associated with...
This driving simulator study, conducted as part of the EU AdaptIVe project, investigated drivers’ pe...
The National Transportation Safety Board (NTSB) estimates that 80% of the deaths and injuries result...
Driving is a task that requires the timely detection of critical events and relevant changes in traf...
Driver braking behavior was analyzed using time-series recordings from naturalistic rear-end conflic...
This paper develops driver reaction-time models for car-following analysis based on human factors. T...
Rear-end collisions are often quoted as being a major cause of road traffic accidents. In response t...
Previous studies have shown the effect of a lead vehicle’s speed, deceleration rate and headway dist...
Rear-end crashes are common accident scenarios and account for approximately 30% of all police-repor...
Considering the large proportion of rear-end collisions occurring in our daily life and the severity...
Until recently, little has been known about what exactly happens in the seconds leading up to a car ...
Brake Reaction Time (BRT) is an important parameter for road safety. Previous research has shown tha...
Road safety is affected by human factors. This should suggest to engineers that driver’s behaviour h...
This study assessed the ability of drivers to detect the deceleration of a preceding vehicle in a si...
This study used a video-based braking simulation dual task to carry out a preliminary evaluation of ...
Driving has become an integral part of our daily lives, and so too have the dangers associated with...
This driving simulator study, conducted as part of the EU AdaptIVe project, investigated drivers’ pe...
The National Transportation Safety Board (NTSB) estimates that 80% of the deaths and injuries result...
Driving is a task that requires the timely detection of critical events and relevant changes in traf...