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Impact of response delay and training on user performance with text-based and graphical user interfaces for engineering design

机译:响应延迟和培训对基于文本和图形用户界面进行工程设计的用户性能的影响

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摘要

With recent computer advances, visualization techniques are becoming more prevalently used as decision support tools for parametric design and engineering optimization. Despite the apparent advantages of visualization techniques, we have found little evidence in the engineering design literature that assesses the impact of fast graphical design interfaces on the efficiency and effectiveness of engineering design decisions. In this paper, we present experimental results from an I-beam design problem where the importance of rapid feedback is investigated by incorporating time delays in the software response to “mimic” computationally expensive design analyses. Design efficiency is measured by recording the completion time for solving the design problem, and design effectiveness is measured by calculating the error between a submitted design and the known optimum. The impact of graphical feedback is examined by comparing user performance on three different design interfaces to determine if their functionality and graphical capabilities mediate the impact of response delays in the software or the amount of training needed. Experimental results indicate that, on average, error increased by 280% and completion time increased by 33% when a delay of 1.5 s was present, and the perceived workload significantly increased as well. Meanwhile, user performance improved and perceived workload decreased as the “richness” of the design interface increased. The combination of a rich interface with a fast response time, therefore, will lead to the “best” interface as one might surmise, but our work provides the first empirical evidence of the effect of response delay on user performance within a realistic engineering design setting. Implications for interface development for engineering design are explored within the context of our findings, as are suggestions for future work.
机译:随着计算机的最新发展,可视化技术正越来越普遍地用作参数设计和工程优化的决策支持工具。尽管可视化技术具有明显的优势,但我们在工程设计文献中几乎找不到证据来评估快速图形设计界面对工程设计决策的效率和有效性的影响。在本文中,我们介绍了工字梁设计问题的实验结果,其中通过在软件响应中纳入时间延迟,以对“模仿”计算上昂贵的设计分析进行研究,从而研究了快速反馈的重要性。通过记录解决设计问题的完成时间来衡量设计效率,并通过计算提交的设计与已知最优值之间的误差来衡量设计有效性。通过比较三个不同设计界面上的用户性能来检查图形反馈的影响,以确定它们的功能和图形功能是否可以调解软件中响应延迟的影响或所需的培训量。实验结果表明,平均而言,当存在1.5 s的延迟时,错误增加280%,完成时间增加33%,并且感知的工作量也显着增加。同时,随着设计界面的“丰富性”的提高,用户性能得到了改善,感知的工作量减少了。因此,丰富的界面与快速的响应时间的结合将导致“最佳”界面,这可能是人们可能会猜到的,但是我们的工作提供了在实际工程设计环境中响应延迟对用户性能的影响的第一个经验证据。 。在研究结果的范围内探讨了对工程设计的界面开发的含义,以及对未来工作的建议。

著录项

  • 来源
    《Research in Engineering Design》 |2007年第2期|49-65|共17页
  • 作者单位

    Mechanical and Industrial Engineering and Engineering Design Penn State University 329 Leonhard Building University Park PA 16802 USA;

    Department of Industrial and Manufacturing Engineering Penn State University University Park PA 16802 USA;

    Department of Industrial and Manufacturing Engineering Penn State University University Park PA 16802 USA;

    Mechanical Engineering Penn State University University Park PA 16802 USA;

    Supply Chain and Information Systems Penn State University University Park PA 16802 USA;

    Department of Industrial and Manufacturing Engineering Penn State University University Park PA 16802 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Parameter design; Design space visualization; Human-computer interaction;

    机译:参数设计;设计空间可视化;人机交互;

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