Research on the Big Curriculum Construction of Circuit Signal and System under the Background of Emerging Engineering
Shuwang Chang, Y. Jing
{"title":"Research on the Big Curriculum Construction of Circuit Signal and System under the Background of Emerging Engineering","authors":"Shuwang Chang, Y. Jing","doi":"10.2991/ICHSSD-19.2019.67","DOIUrl":null,"url":null,"abstract":"Guided by the trilogy of emerging engineering construction, a novel teaching concept of student-centered, outcome-based has been updated and established. The knowledge fusions of three levels are achieved from interior of single course, among three courses and the interdisciplinary perspective for the three courses including Circuit Theory Foundation, Signal and System and Digital Signal Processing. So, a big curriculum knowledge system has been established. The practice has proved that the proposed knowledge system of the big curriculum has improved effectively students' learning efficiency, learning ability, engineering awareness and innovative awareness. 1. Research Background The year of 2017 is the first year of emerging engineering construction (EEC) in China. Fudan University Consensus [1], Tianjin University Movement [2] and Beijing Guidance [3] are the trilogy of EEC, which put forward new requirements for talent training from different angles. The Fudan University Consensus points out that comprehensive colleges and universities should promote the organic integration of science education and humanities education. The Tianjin University Movement points out that a new paradigm for engineering development should be explored and established actively. The latest developments of industry and technology and the latest requirements of industry for personnel training should be introduced into teaching, and the teaching contents and curriculum system should be updated. The Beijing Guidance presents that it is necessary to pay more attention to the leading of concept and establish the concept of innovative engineering education. At the same time, there are still some problems in our current teaching and learning. Current college students, called digital native generation or network generation [4], are very different from the previous ones because they have strong dependence on the network. The courses of Circuit Theory Foundation (CTF), Signal and System (S&S) and Digital Signal Processing (DSP) are the professional basic courses of electronic information science and technology and communication engineering in many colleges and universities, which play an irreplaceable role in the majors for cultivating students’ abilities of thinking mode, innovation consciousness, methodology and system theory. However, there are some issues in the actual teaching, such as self-centered, lack of connection and coordination among these courses, repeated contents between the before and after course, and disconnected for some knowledge among these courses, which are not conducive to the overall study of students and do not meet the requirements of EEC. Facing the new era, new background and new requirements, it is necessary and urgent to explore and cultivate engineering students with innovative consciousness and engineering practice ability. 4th International Conference on Humanities Science and Society Development (ICHSSD 2019) Copyright © 2019, the Authors. Published by Atlantis Press. This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/). Advances in Social Science, Education and Humanities Research, volume 328","PeriodicalId":135635,"journal":{"name":"Proceedings of the 2019 4th International Conference on Humanities Science and Society Development (ICHSSD 2019)","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Proceedings of the 2019 4th International Conference on Humanities Science and Society Development (ICHSSD 2019)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2991/ICHSSD-19.2019.67","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Guided by the trilogy of emerging engineering construction, a novel teaching concept of student-centered, outcome-based has been updated and established. The knowledge fusions of three levels are achieved from interior of single course, among three courses and the interdisciplinary perspective for the three courses including Circuit Theory Foundation, Signal and System and Digital Signal Processing. So, a big curriculum knowledge system has been established. The practice has proved that the proposed knowledge system of the big curriculum has improved effectively students' learning efficiency, learning ability, engineering awareness and innovative awareness. 1. Research Background The year of 2017 is the first year of emerging engineering construction (EEC) in China. Fudan University Consensus [1], Tianjin University Movement [2] and Beijing Guidance [3] are the trilogy of EEC, which put forward new requirements for talent training from different angles. The Fudan University Consensus points out that comprehensive colleges and universities should promote the organic integration of science education and humanities education. The Tianjin University Movement points out that a new paradigm for engineering development should be explored and established actively. The latest developments of industry and technology and the latest requirements of industry for personnel training should be introduced into teaching, and the teaching contents and curriculum system should be updated. The Beijing Guidance presents that it is necessary to pay more attention to the leading of concept and establish the concept of innovative engineering education. At the same time, there are still some problems in our current teaching and learning. Current college students, called digital native generation or network generation [4], are very different from the previous ones because they have strong dependence on the network. The courses of Circuit Theory Foundation (CTF), Signal and System (S&S) and Digital Signal Processing (DSP) are the professional basic courses of electronic information science and technology and communication engineering in many colleges and universities, which play an irreplaceable role in the majors for cultivating students’ abilities of thinking mode, innovation consciousness, methodology and system theory. However, there are some issues in the actual teaching, such as self-centered, lack of connection and coordination among these courses, repeated contents between the before and after course, and disconnected for some knowledge among these courses, which are not conducive to the overall study of students and do not meet the requirements of EEC. Facing the new era, new background and new requirements, it is necessary and urgent to explore and cultivate engineering students with innovative consciousness and engineering practice ability. 4th International Conference on Humanities Science and Society Development (ICHSSD 2019) Copyright © 2019, the Authors. Published by Atlantis Press. This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/). Advances in Social Science, Education and Humanities Research, volume 328
新兴工程背景下电路信号与系统大课程建设研究
在新兴工程建设三部曲的指导下,更新并确立了以学生为中心、以成果为基础的新型教学理念。三个层次的知识融合是从单门课程内部、三门课程之间以及电路理论基础、信号与系统、数字信号处理三门课程的跨学科视角来实现的。因此,建立了一个大的课程知识体系。实践证明,提出的大课程知识体系有效地提高了学生的学习效率、学习能力、工程意识和创新意识。1. 2017年是中国新兴工程建设(EEC)的元年。复旦大学共识[1]、天津大学运动[1]和北京指导[3]是经济共同体的三部曲,从不同角度对人才培养提出了新的要求。《复旦大学共识》指出,综合性高校应促进科学教育与人文教育的有机结合。天津大学运动指出,应积极探索和建立工程发展的新范式。将行业和技术的最新发展以及行业对人才培养的最新要求引入教学,更新教学内容和课程体系。《北京指导意见》提出,要更加注重理念引领,树立创新工程教育理念。同时,我们目前的教学中还存在一些问题。现在的大学生被称为数字原生代或网络一代,他们对网络的依赖性很强,与以往的大学生有很大的不同。电路理论基础(CTF)、信号与系统(S&S)和数字信号处理(DSP)课程是许多高校电子信息科学与技术、通信工程专业的专业基础课,对培养学生的思维方式、创新意识、方法论和系统理论等能力在专业中具有不可替代的作用。但在实际教学中存在着以自我为中心,课程之间缺乏联系和协调,课程前后内容重复,课程之间部分知识脱节等问题,不利于学生的整体学习,不符合EEC的要求。面对新时代、新背景、新要求,探索和培养具有创新意识和工程实践能力的工科学生是十分必要和迫切的。第四届人文科学与社会发展国际会议(ICHSSD 2019)版权所有©2019,作者。亚特兰蒂斯出版社出版。这是一篇基于CC BY-NC许可(http://creativecommons.org/licenses/by-nc/4.0/)的开放获取文章。社会科学、教育和人文研究进展,第328卷
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