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| Competency-Map-Driven Construction of Digital Textbooks for Vocational Education: Dynamic Mechanisms, Practical Obstacles, and Implementation Pathways |
| LU Yuzheng1,LIU Xudong2 |
1. Institute of Curriculum and Textbook Research, Ministry of Education, 100029, Beijing, China 2. College of Applied Science and Technology, Beijing Union University, 100101, Beijing, China |
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Abstract A competency map is a visual graphic used to present the progression and structural relationships of vocational competencies. Leveraging digital technology, it describes the connotative elements, related resources, and their carriers of vocational competencies, playing a significant role in mining, analyzing, constructing, mapping, and displaying multilevel vocational competencies and their interrelationships. Currently, competency maps have become a key technology for promoting the digital transformation of vocational education in the era of artificial intelligence and serve as a core instrument in the development of digital textbooks in vocational education. Employing research methods such as literature analysis and logical reasoning, this study focuses on the dynamic mechanisms and practical obstacles in the competency map-driven construction of digital textbooks in vocational education, aiming to propose targeted implementation pathways. The driving forces behind competency map-driven construction of digital textbooks in vocational education are diverse and hierarchical, covering three dimensions: institutional, practical, and technological dynamics. Specifically, in terms of institutional dynamics, a series of policies guide the development of digital textbooks in vocational education; in terms of practical dynamics, digital transformation facilitates the development of digital textbooks in vocational education; in terms of technological dynamics, cutting-edge technologies empower the upgrading of digital textbooks in vocational education. However, in practical application processes, due to challenges such as ambiguous teaching objectives, high difficulty in content integration, significant disparities among teaching modules, and excessive technological intervention in vocational education digital textbooks, the driving process of competency maps faces practical obstacles including impacting the cultivation of students' vocational literacy, hindering the construction of students' knowledge systems, obstructing students' holistic grasp of knowledge and skills, and affecting positive teacher-student interaction and emotional connection. Therefore, four strategic pathways are proposed to promote the implementation pathways for competency map-driven construction of digital textbooks in vocational education. First, anchor vocational literacy development by setting clear teaching objectives for vocational education digital textbooks. Second, construct a vocational education knowledge system by developing systematic content for vocational education digital textbooks. Third, efficiently integrate learning resources to develop blended teaching modules for vocational education digital textbooks. Fourth, strengthen teacher-student teaching interaction and optimize the technology-driven mechanism of vocational education digital textbooks.
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Published: 09 January 2026
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| 代表性职业的核心能力要求 | 数字教材基本要素 | | 职业名称 | 所属产业 | 核心能力要求 | 目标定位 | 开发主体 | 内容选择 | | 农业数字化技术员 | 第一产业 | 农场智慧化管理、智慧农场智能农机装备运维和智慧农场精准作业等核心能力 | 使学生具备运用数据与智能装备精准决策和科学管理的复合能力 | 农林类职业院校、农业企业、农机化服务站、行业协会等 | 物联网数据采集、智慧决策模型、无人机遥感、智慧灌溉等教学内容 | | 智能制造工程技术人员 | 第二产业 | 智能设备数据采集、多源信息集成与智能分析等核心技能 | 使学生具备驾驭智能制造系统的集成思维与协同能力 | 机电类职业院校、自动化与软件企业、行业协会等 | 网络安全、数据采集、仓储物流、生产追溯、质量管控、数字化生产等教学内容 | | 城市轨道交通检修工 | 第三产业 | 整车装备检查、整车校线、电路测试与系统调试、故障排除等能力 | 使学生具备智能诊断、预测性维护和保障轨道系统安全的能力 | 铁道类职业院校、电力机车企业、行业协会等 | 整备试验、牵引传动系统调试、制动系统调试、网络控制系统调试、整车互联互通试验等教学内容 |
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| 1 |
王亚盛, 时誉玮, 于春晓, 等. 职业教育“金专”能力图谱:逻辑理路、构建机理与实践路径[J]. 中国职业技术教育, 2024 (32): 35-41,56.
|
| 2 |
骈扬, 余胜泉, 李晟. 基于认知诊断的有效作业精准化设计[J]. 中国远程教育, 2023 (8): 13- 24.
|
| 3 |
李森, 杜尚荣, 张姝, 等. 新时代高素质专业化教师队伍建设的多维审视(笔谈)[J]. 现代教育管理, 2025 (8): 1- 19.
|
| 4 |
韩玉, 徐涵, 赵楚. 职业教育专业能力标准的数智化:能力图谱及应用场景开发[J]. 教育研究与实验, 2024 (5): 99- 107.
|
| 5 |
李雪峰, 黄亦宁. 跨境数字贸易的数据流动风险:传导机制与韧性规制[J]. 财经科学, 2025 (7): 91- 105.
|
| 6 |
陈乃建, 门秀花, 陈鑫. 具身智能视域下智能制造领域人才培养的需求转型与范式重构[J]. 中国大学教学, 2025 (7): 46- 53.
|
| 7 |
陈海霞, 周立林. 数字化背景下职业教育数字教材的应用形态、场景及功能探析[J]. 中国电化教育, 2024 (9): 116- 121.
|
| 8 |
郭利强, 李佳宁. 知识图谱赋能数字教材:动因、障碍及实施路向[J]. 课程·教材·教法, 2024 (11): 37- 43.
|
| 9 |
池春阳, 李震. 人工智能时代高职教育产教融合生态的重构路径[J]. 浙江社会科学, 2025 (7): 109- 112.
|
| 10 |
李晓华. 新一轮科技革命和产业变革下我国经济发展的机遇与挑战[J]. 理论学刊, 2025 (4): 113- 122.
|
| 11 |
焦念志, 李三忠, 胡晨, 等. 创新科学教育范式:以《宜居地球》通识课程为例[J]. 中国科学院院刊, 2025 (6): 1046- 1057.
|
| 12 |
Bundesinstitut fur Berufsbildung. Open educational resources(OER)fur die berufsbildung[EB/0L]. [2025-06-25]. https://www.bibb.de/dienst/publikationen/download/10347.
|
| 13 |
张跃东. “网络学习空间”建设机制与应用模式探索[J]. 中国职业技术教育, 2018 (4): 56- 62.
|
| 14 |
张靖卉, 李桃. 职业院校教师数字教材使用的两难空间与突围路径[J]. 教育与职业, 2025 (3): 66- 73.
|
| 15 |
金晓艳, 赫天姣. 国际中文教育数字革命的现实与进路[J]. 当代外语研究, 2022 (6): 133- 139.
|
| 16 |
张靖卉, 朱东阳. 职业教育数字教材的技术演进、现实境遇与远景透视[J]. 职教论坛, 2025 (2): 46- 54.
|
| 17 |
周杰, 刘珍, 童卫丰. 生成式人工智能增强职业教育适应性学习的价值逻辑与实践探赜[J]. 中国职业技术教育, 2025 (15): 51- 59.
|
| 18 |
王佑镁, 赵文竹, 宛平, 等. 数字智商及其能力图谱:国际进展与未来教育框架[J]. 中国电化教育, 2020 (1): 46- 55.
|
| 19 |
范贝贝, 李瑾. 智慧农业新质生产力何以形成:基于融合分析框架的多案例研究[J]. 当代经济管理, 2025 (11): 38- 48.
|
| 20 |
蒋川宇, 韩翔宇, 杨文蕊, 等. 医学知识图谱研究与应用综述[J]. 计算机科学, 2023 (3): 83- 93.
|
| 21 |
朱红涛, 李姝熹. 信息茧房研究综述[J]. 图书情报工作, 2021 (18): 141- 149.
|
| 22 |
杨明明, 王溪淙. 基于大语言模型的高校俄语教材数智化教学探索:以《走遍俄罗斯1》为例[J]. 当代外语研究, 2025 (3): 129- 139.
|
| 23 |
李青青,陈蕾. 社交异构知识引导的多行为序列推荐方法[EB/OL]. [2025-08-22]. https://doi.org/10.19734/j.issn.1001-3695.2025.05.0133.
|
| 24 |
王海花,孙倩如,刘黎,等. 专精特新企业技术专业化与关键核心技术突破[EB/OL]. [2025-08-22]. https://doi.org/10.16192/j.cnki.1003-2053.20250107.003.
|
| 25 |
徐田子, 孙芙蓉. 智能时代高等教育数字教材建设的实践样态、现实挑战与推进路径[J]. 开放教育研究, 2025 (4): 109- 115.
|
|
|
|