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The rapid development of digital technology promotes the media industry, which makes the contemporary mass media has been widely used. In this paper, the author study on smart multimedia classroom and work mode of college instructors based on cloud computing. Cloud computing has changed the traditional PC centric computing model, all of the program data are all hosted in the cloud server. With the application of the social media platform, the instructor can transfer the education information to the college students at any time and at any place. Social media is interactive for college students to browse educational information; students can also use instant messaging tools. This interaction model can avoid the didactic education; and could enhance the recognition and trust of college counselors.

2

중등학교 교실의 이산화탄소(CO2) 관리를 위한 지능형 창호개폐 작동 프로세스

최윤영, 이현수

[Kisti 연계] 한국교육시설학회 교육시설 : 한국교육시설학회논문집 Vol.25 No.4 2018 pp.19-30

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The school classroom is a common living place where students spend 7 to 14 hours a day to prepare for their careers. Therefore, if the ventilation of the classroom is not properly performed, it may lead to the deterioration of learning ability due to the unclear air. The concentration of carbon dioxide in the classroom is reported to be high, and the increase in carbon dioxide concentration has a negative effect on the learner's academic performance. In this context, the purpose of this study is to propose a methodology for intelligent and responsive window opening-closing operation process that can reduce the concentration of $CO_2$ in the classroom in order to build a support space that can create an effective teaching-learning environment for adolescents. The specific objectives are as follows. First of all, we define the concept of window opening-closing operation. Secondly, twe develop the operation process of window opening-closing. Thirdly, we develop an algorithm for real-time window opening and closing (process) (Window Opening-Closing Operation Process). Finally, we verify the intelligent responsive window opening-closing operation process through developing examples of window opening-closing operation process using the parametric design program. This study is a preliminary study to develop algorithms necessary for window opening-closing operation. Based on the first-order algorithm, We simulated window opening-closing operations according to a hypothetical scenario. As a result, This study can show that the window is open and close depending on the $CO_2$ concentration, but the $CO_2$ concentration in the room is higher than outdoors. Consequentially, we suggest that it is necessary to develop an algorithm to supplement these results because window is often not working when the temperature difference between indoor and outdoor in winter is large.

 
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