Simulator training with a forward collision warning system: effects on driver-system interactions and driver trust

Hum Factors. 2012 Oct;54(5):709-21. doi: 10.1177/0018720812441796.

Abstract

Objective: The study addressed the role of familiarization on a driving simulator with a forward collision warning (FCW) and investigated its impact on driver behavior.

Background: Drivers need a good understanding of how an FCW system functions to trust it and use it properly. Theoretical and empirical data suggest that exploring the capacities and limitations of the FCW during the learning period improves operating knowledge and leads to increased driver trust in the system and better driver-system interactions.The authors tested this hypothesis by comparing groups of drivers differing in FCW familiarity.

Method: During the familiarization phase, familiarized drivers were trained on the simulator using the FCW, unfamiliarized drivers simply read an FCW manual, and control drivers had no contact with the FCW. During the test, drivers drove the simulator and had to interact with traffic; both familiarized and unfamiliarized drivers used the FCW, whereas controls did not.

Results: Simulator familiarization improved driver understanding of FCW operation. Driver-system interactions were more effective: Familiarized drivers had no collisions, longer time headways, and better reactions in most situations. Familiarization increased trust in the FCW but did not raise system acceptance.

Conclusion: Familiarization on the simulator had a positive effect on driver-system interactions and on trust in the system. The limitations of the familiarization method are discussed in relation to the driving simulator methodology.

Application: Practicing on a driving simulator with driving-assistance systems could facilitate their use during real driving.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Accidents, Traffic / prevention & control*
  • Adult
  • Analysis of Variance
  • Automobile Driving / education*
  • Automobile Driving / psychology
  • Automobiles
  • Computer Simulation
  • Equipment Design
  • Female
  • Humans
  • Male
  • Protective Devices*
  • Self Efficacy
  • Statistics, Nonparametric
  • Trust