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Caches as an Example of Machine-gradable Exam Questions for Complex Engineering Systems

机译:缓存作为复杂工程系统的机器渐进考试问题的示例

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This Innovative Practice Full Paper presents a framework for generating computer-based exams for complex engineering systems (such as cache memories) that can be machine graded while still offering partial credit for students. Complex multi-faceted engineering systems often require long, multi-part problems to fully assess students’ understanding of those systems. Cache memories represent one such system in computer architecture courses. Traditionally, we assessed students’ understanding of caches using comprehensive, multipart questions in a paper-based exam. Grading these exams was time-consuming and relied on subjective grading. To cope with rising enrollment, we sought to address these issues by developing machine administered and gradable exams that did not heavily rely on multiple-choice questions or exact numerical responses. Additionally, this system needed to provide partial credit, a common expectation of our students. We developed a cache simulator to use as a back-end for our questions. We used the simulator to develop exam questions and new homework assignments to help students practice cache memory concepts. To give students access to fair partial credit, we allowed multiple submissions for the exam questions with limited feedback. We also awarded partial credit for answers within certain tolerance of the correct answer. The partial credit awarded reduced as deviation from the correct answer increased. Consequently, students could correct minor mistakes or propagating errors which are common reasons for awarding partial credit. To evaluate the effect of the switch from paper-based to computerized exam, we ported questions from one of our paper-based exams to a computerized exam. We evaluated the differences in student performance on paper-based version and the computerized version of the questions and found mixed results with students performing comparably or better than the paper-based exam on the computer-based exam. We also surveyed students about their experience with the computer-based exam. Students overwhelmingly indicated a preference for the computer-based exam. We believe that ideas from our work can be used to automate generation, administration, and grading of complex multi-part questions in engineering disciplines beyond computer architecture.
机译:这种创新练习练习全文介绍了为复杂工程系统(如缓存存储器)产生基于计算机的考试,这可以是机器分级,同时为学生提供部分信誉。复杂的多方面工程系统通常需要长期多件问题,以充分评估学生对这些系统的理解。缓存存储器代表计算机架构课程中的一个这样的系统。传统上,我们评估了在基于纸张的考试中使用全面的多部分问题对学生对高速缓存的理解。评分这些考试是耗时的,依赖主观评分。为了应对注册的上升,我们试图通过开发机器管理和渐进考试来解决这些问题,这些考试并没有严重依赖多项选择问题或精确的数值响应。此外,该系统需要提供部分信贷,这是我们学生的共同期望。我们开发了一个缓存模拟器,用作我们的问题的后端。我们使用模拟器开发考试问题和新的家庭作业,以帮助学生练习缓存内存概念。为了让学生获得公平的部分信贷,我们允许多次提交的考试问题有限的反馈。我们还授予答案的部分信贷,以便在某些公差的正确答案中获得答案。由于偏差与正确答案的偏差增加,部分信贷增加。因此,学生可以纠正小错误或传播错误,这是授予部分信贷的常见原因。为了评估从纸张基于纸张化的计算机化考试的效果,我们将基于纸质考试的一个关于计算机化考试的问题移植。我们评估了纸质版本的学生表现的差异,以及问题的计算机化版本,并找到了比基于计算机考试的纸张考试的比较或更好的学生的混合结果。我们还通过基于计算机的考试调查了学生的经验。学生压倒性地表明了对基于计算机的考试的偏好。我们认为,我们的工作中的想法可用于自动化复杂的多部分问题在计算机架构之外的复杂多部分问题的生成,管理和评分。

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