人机交互信息流场模型

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE
Qiuqi Wu, Youchao Sun, Man Xu
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引用次数: 0

摘要

目的 约 70% 的飞机事故是由人机互动造成的,因此识别和量化影响性能的因素是人类可靠性研究中的一项重大挑战。提出人机交互的信息流场模型,有助于更好地确定影响性能的因素,弥补飞机驾驶舱内信息流和反馈过程模型的不足。为了提高人机交互的效率,本文旨在利用仿真结果研究系统中的重要耦合因素。结果结果表明,人机交互的效果受单个重要因素和耦合因素的显著影响。原创性/价值这项工作的创新之处在于提出了驾驶舱信息流的理论模型,并利用系统动力学分析了人机环路中的因素对人机功效的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An information flow field model for human–machine interaction

Purpose

About 70% of all aircraft accidents are caused by human–machine interaction, thus identifying and quantifying performance shaping factors is a significant challenge in the study of human reliability. An information flow field model of human–machine interaction is put forward to help better pinpoint the factors influencing performance and to make up for the lack of a model of information flow and feedback processes in the aircraft cockpit. To enhance the efficacy of the human–machine interaction, this paper aims to examine the important coupling factors in the system using the findings of the simulation.

Design/methodology/approach

The performance-shaping factors were retrieved from the model, which was created to thoroughly describe the information flow. The coupling degree between the performance shaping factors was calculated, and simulation and sensitivity analysis are based on system dynamics.

Findings

The results show that the efficacy of human–computer interaction is significantly influenced by individual important factors and coupling factors. To decrease the frequency of accidents after seven hours, attention should be paid to these factors.

Originality/value

The novelty of this work lies in proposing a theoretical model of cockpit information flow and using system dynamics to analyse the effect of the factors in the human–machine loop on human–machine efficacy.

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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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