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Human-computer network interaction: Delay effects and its mediators.

机译:人机网络交互:延迟效应及其介体。

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Interaction delay in Human-Computer Network Interaction is one of the decisive factors influencing task performance and user satisfaction. This dissertation study investigated several important aspects of interaction delay in HCNI including delay perception, delay tolerance, delay effects on task performance, and the dynamics between interaction delay and Information Technology System usage. Three interrelated experiments were conducted to test 13 specific hypotheses about delay perception, tolerance and effects. Experiment 1 explored delay tolerance model in computer file downloading tasks using scenario-based interactive survey. Experiment 2 investigated delay effects and its mediators in HCNI as well as delay perception and tolerance using Website browsing tasks. Experiment 3 was an initial effort of studying the dynamics between interaction delay and ITS usage using simulation method. Results from previous delay studies including Experiments 1 and 2 were used in Experiment 3 to develop the simulation model.; The major findings from this dissertation study are: (1) Delay tolerance is mainly determined by the ratio of perceived delay/expected delay; (2) Actual delay is the primary factor that influences perceived delay; (3) File size, network bandwidth, actual delay, the importance of the file content, and time availability for task completion can significantly affect user's delay tolerance; (4) Both information technology system factors (file size and network bandwidth) and task context factors (time availability and file importance) can significantly affect delay expectation; (5) Delay feedback (presence and format) can significantly improve task preference, but higher task preference is not always related to higher performance; (6) Actual delay can significantly affect users' delay tolerance and performance as well as system performance; (7) Delay perception conforms to Vierordt's law at the time scale of cognitive band (0.1--60 seconds); (8) The simulation modeling is a promising method for studying delay effects and their mediators in HCNI.; A new delay tolerance model for file downloading was developed using the results of this study. Further study is needed to investigate the effect of delay feedbacks on delay tolerance and task performance. The simulation model also needs system performance data to calibrate parameter settings.
机译:人机交互中的交互延迟是影响任务性能和用户满意度的决定性因素之一。本文研究了HCNI中交互延迟的几个重要方面,包括延迟感知,延迟容忍度,延迟对任务性能的影响以及交互延迟与信息技术系统使用之间的动态关系。进行了三个相互关联的实验,以测试关于延迟感知,耐受性和影响的13种具体假设。实验1使用基于场景的交互式调查探索了计算机文件下载任务中的延迟容忍模型。实验2使用网站浏览任务调查了HCNI中的延迟影响及其中介者,以及延迟感知和容忍度。实验3是使用仿真方法研究交互延迟和ITS使用之间动态关系的初步工作。实验3中使用了包括实验1和2在内的先前延迟研究的结果来开发仿真模型。本论文的主要研究结果是:(1)延迟容忍度主要由感知延迟/预期延迟之比决定; (2)实际延迟是影响感知延迟的主要因素; (3)文件大小,网络带宽,实际延迟,文件内容的重要性以及任务完成的时间可用性会严重影响用户的延迟容忍度; (4)信息技术系统因素(文件大小和网络带宽)和任务上下文因素(时​​间可用性和文件重要性)都会严重影响延迟期望; (5)延迟反馈(状态和格式)可以显着改善任务偏好,但是更高的任务偏好并不总是与更高的性能相关; (6)实际延迟会严重影响用户的延迟容忍度和性能以及系统性能; (7)在认知带的时间尺度(0.1--60秒)内,延迟知觉符合维耶德定律; (8)仿真模型是研究HCNI中的延迟效应及其介体的一种有前途的方法。利用这项研究的结果,开发了一种新的文件下载延迟容限模型。需要进一步的研究来研究延迟反馈对延迟容忍度和任务性能的影响。仿真模型还需要系统性能数据来校准参数设置。

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