混合式大学学习数字智能生态系统的形成与发展概念

IF 2.1 Q1 EDUCATION & EDUCATIONAL RESEARCH
S. Grigoriev, R. Sabitov, G. Smirnova, S. Sabitov
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引用次数: 8

摘要

本文提出了大学学习适应性生态系统形成与发展的概念。这一概念不仅可以消除远程教育系统固有的缺点,而且还可以为建立成熟的教育技术奠定基础。构建这样一个生态系统的基础,除了纯粹的教学发展之外,还可以是系统论、数字化和人工智能领域的现代成果。人工智能的进步和工业4.0的快速发展严重影响了教育市场。还必须考虑相当不可预测的自然灾害和流行病。在这种情况下,保持和加强其在未来几十年将迅速变化的教育市场中的地位的唯一方法是在新技术趋势和集成网络集群生态系统的框架内进行流程转型。分散培训和外包可以成为人工智能在教育中成功应用的两个关键功能。对大数据进行建模、优化和分析,形成外包网络和数字化教育链的一整套技术,实时识别各流程的状态模型。在每个时刻,数字孪生都会显示外包流程和教育链的状态,并提供有关计划,准备必要设备,直接准备教育计划,加载教师,会计和监控学习成果等的实际数据。数字孪生既可以用于实时决策,也可以用于预测和规划外包。事实上,在这种方法的框架内,大学和提供外包服务的公司被整合到一个单一的机制中,以解决灵活的个人培训任务。在拟议方法的框架内,有可能建立一个与该地区经济实体相结合的教育大学环境,这是教育生态系统的一个组成部分。正在审议的概念可以预测和规划所需专家的培训,因为其工作模式与实体部门的企业密切相关。这之所以成为可能,是因为培训是根据灵活的计划进行的,这些计划反映了企业对员工能力不断变化的要求。事实上,一所大学或一组大学正在成为领土工业集群的重要组成部分,这使得有可能提高专业培训的效率和质量,并迅速制定新的课程和课程,这些课程和课程将迅速发展实际经济部门所需的能力。人工智能技术与物联网的能力和主要业务流程的数字化相结合,实际上,通过类比大型部门系统形成企业的生态系统,提供了大学生态系统的功能和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The concept of the formation and development of a digital intellectual ecosystem of blended university learning
The article proposes the concept of the formation and development of an adaptive ecosystem of university learning. The concept can allow not only to eliminate the shortcomings inherent in the distance education system, but also to create the basis for building a full-fledged educational technology. The basis for constructing such an ecosystem, in addition to purely didactic developments, can be modern achievements in the field of systems theory, digitalization and artificial intelligence. The education market is seriously affected by advances in artificial intelligence and the rapid development of Industry 4.0. It is also necessary to consider rather unpredictable natural disasters and pandemics. Under these conditions, the only way to maintain and strengthen their positions in the education market, which will rapidly change in the coming decades, is the transformation of processes within the framework of new technological trends and integrated network cluster ecosystems. Decentralized training and outsourcing can become two key functions for the successful application of artificial intelligence in education. Modeling, optimization and analytics of big data make it possible to form a complete set of technologies for creating an outsourcing network and digital educational chains, which allows us to identify the state model of all processes in real time. At each moment in time, the digital twin displays the status of outsourcing processes and educational chains with actual data on planning, preparing the necessary equipment, directly preparing educational programs, loading teachers, accounting and monitoring learning outcomes, etc. The digital twin can be used both for making decisions in real-time, and for forecasting and planning outsourcing. In fact, the university and the companies providing outsourcing services within the framework of this approach are integrated into a single mechanism for solving tasks of flexible individual training. Within the framework of the proposed approach, it is possible to build an educational university environment integrated with real objects of the economy of the territory, which is a component of the educational ecosystem. The concept under consideration allows predicting and planning the training of required specialists, since the model of its work is closely connected with enterprises in the real sector. This becomes possible due to the fact that training takes place according to flexible programs that reflect the ever-changing requirements of enterprises to the competencies of their employees. In fact, a university or a group of universities is becoming an essential component of territorial industrial clusters, which makes it possible to increase the efficiency and quality of specialist training and to quickly develop new curricula and courses that will quickly develop competencies demanded by the real sector of the economy. The use of artificial intelligence technology in combination with the capabilities of the Internet of things and digitalization of the main business processes provides, in fact, the functioning and development of the university’s ecosystem by analogy with the ecosystems of large sectoral system-forming enterprises.
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来源期刊
Informatics in Education
Informatics in Education EDUCATION & EDUCATIONAL RESEARCH-
CiteScore
6.10
自引率
3.70%
发文量
20
审稿时长
20 weeks
期刊介绍: INFORMATICS IN EDUCATION publishes original articles about theoretical, experimental and methodological studies in the fields of informatics (computer science) education and educational applications of information technology, ranging from primary to tertiary education. Multidisciplinary research studies that enhance our understanding of how theoretical and technological innovations translate into educational practice are most welcome. We are particularly interested in work at boundaries, both the boundaries of informatics and of education. The topics covered by INFORMATICS IN EDUCATION will range across diverse aspects of informatics (computer science) education research including: empirical studies, including composing different approaches to teach various subjects, studying availability of various concepts at a given age, measuring knowledge transfer and skills developed, addressing gender issues, etc. statistical research on big data related to informatics (computer science) activities including e.g. research on assessment, online teaching, competitions, etc. educational engineering focusing mainly on developing high quality original teaching sequences of different informatics (computer science) topics that offer new, successful ways for knowledge transfer and development of computational thinking machine learning of student''s behavior including the use of information technology to observe students in the learning process and discovering clusters of their working design and evaluation of educational tools that apply information technology in novel ways.
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