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Building Cloud-Based Information Systems Lab Architecture: Deriving Design Principles that Facilitate the Effective Construction and Evaluation of a Cloud-Based Lab Environment

机译:建立基于云的信息系统实验室体系结构:推导有助于有效构建和评估基于云的实验室环境的设计原则

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摘要

The problem explored in this dissertation report was that at the time of this study, there were no design principles or methodologies based on design science research (DSR) available to use for artifact construction, implementation, and effective evaluation of cloud-based networking lab environments that can be used to foster hands-on technology skills in students. Primarily based on Hevner’s 7 guidelines of DSR, Peffer’s design science research methodology (DSRM), and Gregor’s IS design theory, this study forms the groundwork for the development of procedures and specifications derived from DSR literature to facilitate the construction, implementation, and evaluation of a comprehensive cloud-based computer and information systems (CIS) laboratory artifact that is globally accessible 24 hours a day and 7 days a week. Secondarily, this study guided the construction and implementation of a prototype cloud-based lab environment using the procedures and specifications derived from DSR. The cloud-based lab environment was then evaluated based on the skill level attained by students enrolled in courses that leveraged the proposed system. Results of this study showed that the overwhelming majority of the students who participated in the experiment using the cloud-based lab environment showed statistically significant gains in pretest and posttest scores compared to the students who participated in the experiment using the classroom-based physical equipment. These results fully supported the first hypothesis for this study, that participation in the cloud-based lab environment would promote positive student outcomes. The second hypothesis also was supported. The majority of the experimental group students completed most of the labs and significantly spent more time on the system compared to the control group students using the traditional classroom-based physical lab equipment, which indicated the specifications derived from DSR positively influenced the use of the cloud-based system. An argument was made that the proposed study advances IS and education research through artifact construction and evaluation by correlating Hevner’s 7 steps of effective DSR theory, Peffer’s DSRM, and Gregor’s IS design theory to the problem statement, research questions, and hypothesis in order to develop guiding principles and specifications for building and assessing a cloud-based lab environment.
机译:本研究报告探讨的问题是,在进行本研究时,尚没有基于设计科学研究(DSR)的设计原理或方法可用于基于云的网络实验室环境的构件构建,实现和有效评估。可以用来培养学生的动手技术技能。该研究主要基于Hevner的7条DSR指南,Peffer的设计科学研究方法(DSRM)和Gregor的IS设计理论,为从DSR文献衍生的程序和规范的开发奠定了基础,以促进DSR的构建,实施和评估。全面的基于云的计算机和信息系统(CIS)实验室工件,可以每周7天,每天24小时在全球范围内访问。其次,本研究使用DSR衍生的程序和规范指导了基于云的实验室环境原型的构建和实施。然后,基于参加该提议系统的课程的学生所获得的技能水平,评估了基于云的实验室环境。这项研究的结果表明,与使用基于教室的物理设备参加实验的学生相比,使用基于云的实验室环境参加实验的绝大多数学生在测试前和测试后分数上均具有统计学上的显着提高。这些结果完全支持本研究的第一个假设,即参与基于云的实验室环境将促进学生取得积极的成果。第二个假设也得到支持。与使用传统的基于课堂的物理实验室设备的对照组学生相比,大多数实验组学生完成了大部分实验室,并且在系统上花费了更多时间,这表明源自DSR的规范对云的使用产生了积极影响基于系统。有人认为,拟议的研究通过将Hevner的有效DSR理论,Peffer的DSRM和Gregor的IS设计理论的7个步骤与问题陈述,研究问题和假设相关联,从而通过人工制品的构造和评估来推进IS和教育研究,从而进行发展。构建和评估基于云的实验室环境的指导原则和规范。

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    Trevethan Thomas J.;

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  • 年度 2015
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