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Performance evaluation of practice courses using fuzzy cognitive maps

机译:使用模糊认知图的实践课程绩效评估

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In this study, the effect of practical courses (especially robotics) on students' success is evaluated using fuzzy cognitive maps. This study particularly focuses on how practical courses increase the learning achievements in vocational schools. For this purpose, students and academicians were chosen as stakeholders for this study. Student were selected from departments of machine, electronic and computer. In total views of 30 students were taken and evaluated using fuzzy cognitive maps before the study. Students were studied on three projects within this study. These projects are autonomous cleaning robot, chameleon robot and sumo wrestler robot. Each robot was developed by a group consisting of ten students. Three main outputs determined to be gained by students in the robot development process as sensor calibration, improvement of mechanical systems and software optimization. These outputs are also among the output concepts of the fuzzy cognitive map. Sensor calibration, improvement of the mechanical systems and optimization of the software are the critical tasks respectively for the student groups of electronics, machine and computer. Each student group shared students of their departments homogeneously. Academicians were selected as one from each department. Fuzzy cognitive maps' survey applied to 15 academicians. After the design and development processes of robots, students and academicians views re-evaluated. It was observed clearly from the comparison of the results that, learning achievement, desire to learn, desire to interdisciplinary collaboration, self-confidence, interest in robotic technologies, satisfaction and desire to give priority to practical training in other subjects are increased by %45, %63, %42, %74, %85, %88 and %76 respectively.
机译:在这项研究中,使用模糊认知图评估了实践课程(尤其是机器人技术)对学生成功的影响。这项研究特别侧重于实践课程如何增加职业学校的学习成绩。为此,选择了学生和院士作为本研究的利益相关者。从机械,电子和计算机系选拔学生。在研究之前,总共有30名学生被接受并使用模糊认知图进行了评估。在这项研究中,对学生进行了三个项目的研究。这些项目是自主清洁机器人,变色龙机器人和相扑摔跤机器人。每个机器人都是由十名学生组成的小组开发的。在机器人开发过程中,学生将确定三个主要输出,即传感器校准,机械系统的改进和软件优化。这些输出也属于模糊认知图的输出概念。传感器校准,机械系统的改进和软件的优化分别是电子,机械和计算机专业学生的关键任务。每个学生团体均将各自部门的学生共享。从每个部门中选拔院士为一员。模糊认知图的调查适用于15名院士。经过机器人的设计和开发过程,学生和院士的观点得到了重新评估。通过比较结果可以清楚地看到,学习成就,学习欲望,跨学科合作欲望,自信心,对机器人技术的兴趣,对其他学科优先进行实践培训的满意度和欲望均增加了45%。 ,%63,%42,%74,%85,%88和%76。

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