ANALYSIS OF THE IMPACT OF TASK DIFFICULTY ON THE OPERATORʾS WORKLOAD LEVEL

IF 0.8 Q3 ENGINEERING, AEROSPACE
Marta Galant-Gołębiewska, Barbara Mika, Marta Maciejewska
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引用次数: 2

Abstract

The widely held thesis is that the profession of pilot is one of the most difficult jobs to do. The task of the article was to analyse whether and how the difficulty of the performed task affects the pilot’s workload during the flight. The research was carried out using a flight simulator. During the simulator tests, the cognitive load measurements represented by the change in pilot pulse and concentration were used. A finger pulse oximeter was used for the first purpose. The second device was Mindwave Mobile which allows to measure level of pilot’s concentration and relaxation. The NASA-TLX questionnaire is used as a subjective method of operator’s workload assessment. The examined person assesses the level of his/her load, using six dimensions: mental demand, physical demand, temporal demand, performance, effort, and frustration level. Five research hypotheses were put forward and verified by the Friedman test. It has been shown that the level of difficulty of individual stages of the study is appropriately differentiated by pulse, concentration, relaxation, and subjective assessment of the respondents’ workload. It has been proved that pulse measurement, concentration, and relaxation levels, as well as subjective assessment of load levels, can be successfully used to assess the psychophysical condition of the operator.
任务难度对操作员工作量水平的影响分析
人们普遍认为,飞行员职业是最难做的工作之一。本文的任务是分析执行任务的难度是否以及如何影响飞行员在飞行中的工作量。这项研究是使用飞行模拟器进行的。在模拟器测试期间,使用了以飞行员脉冲和注意力变化为代表的认知负荷测量。第一个目的是使用手指脉搏血氧计。第二个设备是Mindwave Mobile,它可以测量飞行员的注意力和放松程度。NASA-TLX问卷被用作操作员工作量评估的主观方法。受试者使用六个维度评估他/她的负荷水平:心理需求、身体需求、时间需求、表现、努力和挫折水平。提出了五个研究假设,并通过弗里德曼检验进行了验证。研究表明,研究各个阶段的难度水平可以通过脉搏、注意力、放松和对受访者工作量的主观评估来适当区分。已经证明,脉冲测量、浓度和放松水平,以及负荷水平的主观评估,可以成功地用于评估操作员的心理物理状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Aviation
Aviation ENGINEERING, AEROSPACE-
CiteScore
2.40
自引率
10.00%
发文量
20
审稿时长
15 weeks
期刊介绍: CONCERNING THE FOLLOWING FIELDS OF RESEARCH: ▪ Flight Physics ▪ Air Traffic Management ▪ Aerostructures ▪ Airports ▪ Propulsion ▪ Human Factors ▪ Aircraft Avionics, Systems and Equipment ▪ Air Transport Technologies and Development ▪ Flight Mechanics ▪ History of Aviation ▪ Integrated Design and Validation (method and tools) Besides, it publishes: short reports and notes, reviews, reports about conferences and workshops
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