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Post Take-Over Performance Varies in Drivers of Automated and Connected Vehicle Technology in Near-Miss Scenarios.
Yamani, Yusuke; Glassman, Jeffrey; Alruwaili, Abdalziz; Yahoodik, Sarah E; Davis, Emily; Lugo, Samantha; Xie, Kun; Ishak, Sherif.
Afiliação
  • Yamani Y; Old Dominion University, USA.
  • Glassman J; Old Dominion University, USA.
  • Alruwaili A; Old Dominion University, USA.
  • Yahoodik SE; Old Dominion University, USA.
  • Davis E; University of Virginia, USA.
  • Lugo S; University of Texas at San Antonio, USA.
  • Xie K; Old Dominion University, USA.
  • Ishak S; Old Dominion University, USA.
Hum Factors ; : 187208231219184, 2023 Dec 05.
Article em En | MEDLINE | ID: mdl-38052019
ABSTRACT

OBJECTIVE:

This study examined the impact of monitoring instructions when using an automated driving system (ADS) and road obstructions on post take-over performance in near-miss scenarios.

BACKGROUND:

Past research indicates partial ADS reduces the driver's situation awareness and degrades post take-over performance. Connected vehicle technology may alert drivers to impending hazards in time to safely avoid near-miss events.

METHOD:

Forty-eight licensed drivers using ADS were randomly assigned to either the active driving or passive driving condition. Participants navigated eight scenarios with or without a visual obstruction in a distributed driving simulator. The experimenter drove the other simulated vehicle to manually cause near-miss events. Participants' mean longitudinal velocity, standard deviation of longitudinal velocity, and mean longitudinal acceleration were measured.

RESULTS:

Participants in passive ADS group showed greater, and more variable, deceleration rates than those in the active ADS group. Despite a reliable audiovisual warning, participants failed to slow down in the red-light running scenario when the conflict vehicle was occluded. Participant's trust in the automated driving system did not vary between the beginning and end of the experiment.

CONCLUSION:

Drivers interacting with ADS in a passive manner may continue to show increased and more variable deceleration rates in near-miss scenarios even with reliable connected vehicle technology. Future research may focus on interactive effects of automated and connected driving technologies on drivers' ability to anticipate and safely navigate near-miss scenarios. APPLICATION Designers of automated and connected vehicle technologies may consider different timing and types of cues to inform the drivers of imminent hazard in high-risk scenarios for near-miss events.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article