Seeing the woods for the trees: the problem of information inefficiency and information overload on operator performance

被引:0
作者
Nastaran Dadashi
David Golightly
Sarah Sharples
机构
[1] University of Nottingham,Human Factors Research Group
来源
Cognition, Technology & Work | 2017年 / 19卷
关键词
Human computer interaction; Decision support system; Usability engineering;
D O I
暂无
中图分类号
学科分类号
摘要
One of the recurring questions in designing dynamic control environments is whether providing more information leads to better operational decisions. The idea of having every piece of information is increasingly tempting (and in safety critical domains often mandatory) but has become a potential obstacle for designers and operators. The present research study examined this challenge of appropriate information design and usability within a railway control setting. A laboratory study was conducted to investigate the presentation of different levels of information (taken from data processing framework, Dadashi et al. in Ergonomics 57(3):387–402, 2014) and the association with, and potential prediction of, the performance of a human operator when completing a cognitively demanding problem-solving scenario within railways. Results indicated that presenting users only with information corresponding to their cognitive task, and in the absence of other, non task-relevant information, improves the performance of their problem-solving/alarm handling. Knowing the key features of interest to various agents (machine or human) and using the data processing framework to guide the optimal level of information required by each of these agents could potentially lead to safer and more usable designs.
引用
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页码:561 / 570
页数:9
相关论文
共 57 条
[1]  
Balfe N(2012)Development of design principles for automated systems in transport control Ergonomics 55 37-54
[2]  
Wilson JR(2006)Automated scheduling decision support for supervisory control of multiple UAVs J Aerosp Comput Inf Commun 3 294-308
[3]  
Sharples S(2013)Practical use of work analysis to support rail electrical control room: a case of alarm handling Proc Inst Mech Eng Part F J Rail Rapid Transit 227 148-160
[4]  
Clarke T(2014)A framework to support human factors of automation in railway intelligent infrastructure Ergonomics 57 387-402
[5]  
Cummings ML(2016)Alarm handling for health monitoring: operator strategies used in an electrical control room of a rail network Proc Inst Mech Eng Part F J Rail Rapid Transit 230 1415-1428
[6]  
Mitchell P(1995)Toward a theory of situation awareness in dynamic systems Hum Factors J Hum Factors Ergon Soc 37 32-64
[7]  
Dadashi N(2001)Behavioural influences of proximal alarms Hum Factors J Hum Factors Ergon Soc 43 595-610
[8]  
Wilson JR(2013)Disruption management processes during emergencies on the railways Int J Hum Factors Ergon 2 175-195
[9]  
Golightly D(2005)The use of microworlds to study dynamic decision making Comput Hum Behav 21 273-286
[10]  
Sharples S(2002)Simulated task environments: The role of high-fidelity simulations, scaled worlds, synthetic environments, and laboratory tasks in basic and applied cognitive research Cogn Sci Q 2 205-227