Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking

The command and control system is the core support of the information warfare system. The convenience and accuracy of its operation and use directly affect the efficiency of combat command and control. In order to continuously optimize the human-computer interaction effectiveness of the command and...

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Main Author: Tian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang
Format: Article
Language:zho
Published: Editorial Office of Aero Weaponry 2023-08-01
Series:Hangkong bingqi
Subjects:
Online Access:https://www.aeroweaponry.avic.com/fileup/1673-5048/PDF/2023-00008.pdf
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author Tian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang
author_facet Tian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang
author_sort Tian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang
collection DOAJ
description The command and control system is the core support of the information warfare system. The convenience and accuracy of its operation and use directly affect the efficiency of combat command and control. In order to continuously optimize the human-computer interaction effectiveness of the command and control system, it is necessary to establish a scientific and reasonable evaluation method. This paper introduces eye movement tracking technology, uses eye movement data such as pupil diameter, number of saccades, number of fixation points, etc., to build a quantitative evaluation model of human-computer interaction search efficiency, operation efficiency, cognitive load, design complexity and attractiveness of command and control system, and uses entropy weight-variance coefficient method to weight each eye movement data to form a comprehensive evaluation result of human-computer interaction effectiveness of command and control system. Based on this method, a comparative experiment is carried out on the command and control system and the command information system, and the results of the SUS system availability scale and NASA-TLX cognitive load scale are compared and analyzed. The results verify the effectiveness and accuracy of the evaluation method.
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spelling doaj.art-e31f864ac6ee4842829e55433fee80102023-09-04T03:14:57ZzhoEditorial Office of Aero WeaponryHangkong bingqi1673-50482023-08-01304576610.12132/ISSN.1673-5048.2023.0008Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye TrackingTian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang01. Air Traffic Control and Navigation College, Air Force Engineering University, Xi’an 710051, China;2. Air and Missile Defense College, Air Force Engineering University, Xi’an 710051, ChinaThe command and control system is the core support of the information warfare system. The convenience and accuracy of its operation and use directly affect the efficiency of combat command and control. In order to continuously optimize the human-computer interaction effectiveness of the command and control system, it is necessary to establish a scientific and reasonable evaluation method. This paper introduces eye movement tracking technology, uses eye movement data such as pupil diameter, number of saccades, number of fixation points, etc., to build a quantitative evaluation model of human-computer interaction search efficiency, operation efficiency, cognitive load, design complexity and attractiveness of command and control system, and uses entropy weight-variance coefficient method to weight each eye movement data to form a comprehensive evaluation result of human-computer interaction effectiveness of command and control system. Based on this method, a comparative experiment is carried out on the command and control system and the command information system, and the results of the SUS system availability scale and NASA-TLX cognitive load scale are compared and analyzed. The results verify the effectiveness and accuracy of the evaluation method.https://www.aeroweaponry.avic.com/fileup/1673-5048/PDF/2023-00008.pdf|command and control system|human-computer interaction|eye movement|entropy weight-variance coefficient method|nasa-tlx|sus
spellingShingle Tian Chenzhi, Song Min, Tian Jiwei, Xing Qinghua, Liang Wenyang
Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
Hangkong bingqi
|command and control system|human-computer interaction|eye movement|entropy weight-variance coefficient method|nasa-tlx|sus
title Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
title_full Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
title_fullStr Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
title_full_unstemmed Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
title_short Evaluation Method of Human-Computer Interaction Effectiveness of Command and Control System Based on Eye Tracking
title_sort evaluation method of human computer interaction effectiveness of command and control system based on eye tracking
topic |command and control system|human-computer interaction|eye movement|entropy weight-variance coefficient method|nasa-tlx|sus
url https://www.aeroweaponry.avic.com/fileup/1673-5048/PDF/2023-00008.pdf
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