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基于用户体验的智能装备人机交互界面设计 被引量:44

Human-machine interaction interface design of intelligent equipment based on user experience
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摘要 针对传统复杂系统人机交互学习成本高、对操作人员专业背景知识要求高和人机交互体验差等问题,结合当前制造业装备信息化、网络化、智能化、易用化的总体发展趋势,提出一种面向智能化制造装备的复杂信息系统人机交互界面设计模型。旨在从智能技术、交互技术、应用领域的特点出发,归纳总结出符合未来专业装备发展要求的人机交互界面设计思路和相关的交互界面设计原则。在智能焊缝扫描重构模块的交互界面设计工作中进行实践应用,验证了设计方法的有效性。该思路能够对工业制造领域中复杂智能系统的人机交互界面设计提供支撑和参考。 Aiming at the problems of high cost of learning for traditional complex systems,high requirements for professional background knowledge of operators and poor human-computer interaction experience,a design model of human-computer interaction interface for complex information system oriented to intelligent manufacturing equipment was proposed by combining with the trend of information,intelligence and ease of use.The human-machine interactive interface design ideas and related interactive interface design principles were summarized to meet the requirements of future professional equipment development based on the characteristics of intelligent technology,interactive technology and so on.The practice in the work of complex intelligent system interfaces/interfaced to design showed the effectiveness of the proposed method.This idea could provide support for the design of human-computer interaction interface of complex intelligent systems.
作者 马超民 赵丹华 辛灏 MA Chaomin;ZHAO Danhua;XIN Hao(School of Design, Hunan University, Changsha 410082, China)
出处 《计算机集成制造系统》 EI CSCD 北大核心 2020年第10期2650-2660,共11页 Computer Integrated Manufacturing Systems
基金 教育部人文社会科学研究青年基金资助项目(19YJC760075)。
关键词 智能装备 复杂系统 人机交互 界面设计 intelligent equipment complex system human-computer interaction interface design
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  • 1柳忠起,袁修干,刘伟,康卫勇.飞行员注意力分配的定量测量方法[J].北京航空航天大学学报,2006,32(5):518-520. 被引量:35
  • 2王新鹏.认知模型研究综述[J].计算机工程与设计,2007,28(16):4009-4011. 被引量:6
  • 3SCOTT A, SHAPPELL, DOUGLAS A, et al. Applying reason: The human factors analysis and classification system(HFACS) [J]. Human Factors and Aerospace Safety, 2001, 1(1): 59-86.
  • 4SHAPPELL S, DETWILER C, HOLCOMB K. Human error and commercial aviation accidents: An analysis using the human factors analysis and classification system[J]. Human Factors, 2007, 49(2): 227-242.
  • 5SELLALA P, SALVENDY G. Impact of depth of menu hierarchy on performance effectiveness in a supervisory task: Computerized flexible manufacturing system[J]. Human Factors, 1985, 27(6): 713-722.
  • 6GOKLSTONE R L. The complex systems see-change in education[J]. The Journal of the Learning Science, 2006,15(1): 35-43.
  • 7RSAMUSSEN J. Ecological interface: A technological imperative in high-tech systems[J]. International Journalof Human-computer Interaction, 1986, 2: 93-110.
  • 8刘青.航电系统显示界面设计和评估方法研究[D].南京:东南大学,2012.
  • 9REASON J. Human error[M]. New York: Cambridge University Press, 1990.
  • 10KROKOS K J, BAKER D E Preface to the special section on classifying and understanding human error[J]. Human Factors, 2007, 49(2): 175-176.

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