期刊文献+

自适应界面视觉搜索认知特性研究 被引量:5

Research on Visual Search Cognitive Characteristics of Adaptive Interface
在线阅读 下载PDF
导出
摘要 自适应界面中经常遇到调整界面项目区域位置和增大区域面积,吸引用户注意,提高交互效率的情况.本文对自适应界面项目区域位置变化和区域面积增大过程中人的认知特性进行了研究,为自适应界面设计提供依据.设计了工效学实验,使界面自适应项目在中间位置和其他位置进行随机切换,界面自适应项目在原面积界面和增大面积界面之间随机切换,模拟界面元素的自适应过程,要求被试完成视觉搜索任务,记录被试反应时间和正确率.研究表明,在区域位置随机切换条件下,变化方向(上下左右)、变化距离对反应时间均有显著影响;由反应时间随距中心位置距离变化曲线图,眼动热点图,发现被试者对上下方向的变化更敏感;在本文实验条件下,界面项目上下方向自适应变化距离不能超过该方向屏幕尺寸的15%,左右变化不能超过该方向屏幕尺寸的25%;当增大的面积大于原面积的125%时,动态切换因素对反应时间影响显著,所以增大的面积不能超过原面积100%. In order to attract users'attention and improve the efficiency of interaction,adjusting the position and increasing the area of interface elements is very common in adaptive interface.In this paper,we studied the cognitive characteristics of people in the process of the change of regional location and the increase of regional area of the adaptive interface,which provides guidelines for the design of the adaptive interface.Ergonomics experiments were designed to make the interface adaptive items randomly switch between the middle position and other locations,as well as the original area interface and the enlarged area interface.The subjects were asked to complete the visual search task,and the reaction time and accuracy of the subjects were recorded.The results show that the direction(up,down,left and right),and the distance have significant effects on the reaction time.The eye movement heatmap shows that subjects are more sensitive to change in the direction of the up and down.Under the experimental conditions,the adaptive change distance of the interface items in the up and down directions can not exceed 12.5%of the screen size;the change distance cannot exceed 25%of the screen size in the direction of left and right.When the increase is greater than 125%of the original area,the dynamic switching factor has a significant effect on the reaction time,so the proportion of area increase can not exceed 100%.
作者 瞿珏 朱帅 王崴 李芳正 胡波 QU Jue;ZHU Shuai;WANG Wei;LI Fang-zheng;HU Bo(School of Aeronautics,Northwestern Polytechnical University,Xi’an,Shaanxi 710072,China;Air and Missile Defense College,Air Force Engineering University,Xi’an,Shaanxi 710051,China)
出处 《电子学报》 EI CAS CSCD 北大核心 2021年第2期338-345,共8页 Acta Electronica Sinica
基金 国家自然科学基金(No.51675530)。
关键词 人机工效 自适应界面 眼动追踪 认知特性 ergonomics adaptive interface eye-tracking cognitive characteristic
作者简介 瞿珏,男,1985年6月出生于湖南省岳阳市.现为空军工程大学防空反导学院副教授、硕士生导师.主要研究方向为人机交互界面设计、增强现实技术.E-mail:2990781056@qq.com;朱帅,男,1995年9月出生于河南省鹤壁市.2018年毕业于武汉理工大学汽车工程学院.现为空军工程大学防空反导学院硕士研究生,从事微波技术方面的研究工作.主要研究方向为人机交互界面设计.E-mail:2433442900@qq.com;通讯作者:王崴,男,1974年9月出生,陕西长武人.空军工程大学教授、博士生导师,从事研究方向为人机工程、数字化设计.E-mail:624192972@qq.com。
  • 相关文献

参考文献3

二级参考文献34

  • 1Yu C, Shi YC, Balakrishnan R, Meng XL, Suo Y, Fan MM, Qin YQ. The satellite cursor: Achieving MAGIC pointing without gaze tracking using multiple cursors. In: Proc. of the UIST. 2010. 163-173.
  • 2Fitts PM. The information capacity of the human motor system in controlling the amplitude of movement. Journal of Experimental Psychology, 1954,47(6):381-391. [doi: 10.1037/h0055392].
  • 3Balakrishnan R. "Beating"Fitts' law: Virtual enhancements for pointing facilitation. Int'l Journal of Human-Computer Studies, 2004,61(6):857-874. http://dx.doi.org/10.1016/j.ijhcs.2004.09.002.
  • 4Grossman T, Balakrishnan R. The bubble cursor: Enhancing target acquisition by dynamic resizing of the cursor's activation area. In: Progy. of the CHI. 2005.281-290. [doi: 10.1145/1054972.1055012].
  • 5Baudisch P, Cutrell E, Robbins D, Czerwinski M, Tandler P, Bederson B, Zierlinger A. Drag-and-pop and drag-and-pick: Techniques for accessing remote screen content on touch- and pen-operated systems. In: Proc. of the Interact. 2003.57-64.
  • 6Blanch R, Guiard Y, Beaudouin-Lafon M. Semantic pointing: Improving target acquisition with control-display ratio adaptation. In: Proc. of the CHI. 2004. 519-525. [doi: 10.1145/985692.985758].
  • 7Findlater L, Moffatt K, McGrenere J, Dawson J. Ephemeral adaptation: The use of gradual onset to improve menu selection performance. In: Proc. of the CHI. 2009. 1655-1664. [doi: 10.1145/1518701.1518956].
  • 8Sears A, Shneiderman B. Split menus: Effectively using selection frequency to organize menus. ACM Trans. on Computer-Human Interaction, 1994,1(1):27-51. [doi: 10.1145/174630.174632].
  • 9Findlater L, McGrenere J. A comparison of static, adaptive, and adaptable menus. In: Proc. of the CHI. 2004. 89-96. [doi: 10.1145/ 985692.985704].
  • 10Gajos KZ, Everitt K, Tan DS, Czerwinski M, Weld DS. Predictability and accuracy in adaptive user interfaces. In: Proc. of the CHI. 2008. 1271-1274. [doi: 10.1145/1357054.1357252].

共引文献32

同被引文献61

引证文献5

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部