The Independence and Interdependence of Coacting Observers in Regard to Performance Efficiency, Workload, and Stress in a Vigilance Task

Abstract

Objective: We investigated performance, workload, and stress in groups of paired observers who performed a vigilance task in a coactive (independent) manner. Background: Previous studies have demonstrated that groups of coactive observers detect more signals in a vigilance task than observers working alone. Therefore, the use of such groups might be effective in enhancing signal detection in operational situations. However, concern over appearing less competent than ones cohort might induce elevated levels of workload and stress in coactive group members and thereby undermine group performance benefits. Accordingly, we performed the initial experiment comparing workload and stress in observers who performed a vigilance task coactively with those of observers who performed the vigilance task alone. Method: Observers monitored a video display for collision flight paths in a simulated unmanned aerial vehicle control task. Self-reports of workload and stress were secured via the NASA-Task Load Index and the Dundee Stress State Questionnaire, respectively. Results: Groups of coactive observers detected significantly more signals than did single observers. Coacting observers did not differ significantly from those operating by themselves in terms of workload but did in regard to stress; post task distress was significantly lower for coacting than for single observers. Conclusion: Performing a visual vigilance task in a coactive manner with another observer does not elevate workload above that of observers working alone and serves to attenuate the stress associated with vigilance task performance. Application: The use of coacting observers could be an effective vehicle for enhancing performance efficiency in operational vigilance.

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Document Details

Document Type
Technical Report
Publication Date
Sep 01, 2016
Accession Number
AD1021564

Entities

People

  • Andre Garcia
  • Carryl L. Baldwin
  • Eric T. Greenlee
  • Gerald Matthews
  • Gregory J. Funke
  • Joel S. Warm
  • Matthew E. Funke
  • Michael B. Dillard
  • Victor Jr S. Finomore

Organizations

  • 711th Human Performance Wing

Tags

Communities of Interest

  • Air Platforms
  • Autonomy
  • Biomedical
  • Cyber
  • Human Systems

DTIC Thesaurus Topics

  • Air Force
  • Air Force Facilities
  • Air Force Research Laboratories
  • Aircrafts
  • Cognitive Workload
  • Control Systems
  • Detection
  • Efficiency
  • Group Dynamics
  • Human Factors Engineering
  • Information Processing
  • Psychology
  • Signal Detection
  • Social Psychology
  • Task Performance And Analysis
  • Unmanned Aerial Vehicles
  • Workload

Readers

  • Brain and Cognitive Science; Experimental Psychology; Cognitive Neuroscience
  • Team-Based Human-Centered Cognitive Task Decision Making and Information Performance.

Technology Areas

  • Autonomy
  • Space
  • Space - Space Objects