创新创业理论研究与实践 ›› 2026, Vol. 9 ›› Issue (7): 77-79.

• 教育改革与发展 • 上一篇    下一篇

基于产教融合的高职数学建模课程赋能现场工程师能力培养的路径探索

杨清扬, 徐平   

  1. 四川现代职业学院,四川成都 610207
  • 出版日期:2026-04-10 发布日期:2026-07-01
  • 作者简介:杨清扬(1990—),女,河北遵化人,硕士研究生,讲师,研究方向:学科教育(数学)。
  • 基金资助:
    四川高等职业教育研究中心2024年度科研项目“高职院校‘企业学院’赋能现场工程师人才培养的实践路径研究”(GZY24B16)

Exploring the Path of Empowering Field Engineers with Ability Training through the Integration of Industry and Education in Higher Vocational Mathematics Modeling Course

YANG Qingyang, XU Ping   

  1. Sichuan Modern Vocational College, Chengdu Sichuan, 610207, China
  • Online:2026-04-10 Published:2026-07-01

摘要: 产业转型升级对现场工程师素质提出更高要求,传统数学建模课程与生产实际脱节问题凸显。该文立足产教融合理念,探索数学建模课程赋能现场工程师培养的实践路径,提出以企业真实项目重构课程内容,实现教学场景与生产实践深度契合;依托校企共建平台,引导学生在真实工业环境中锻炼解决问题的能力;构建校企协同的评价体系,促进考核标准与岗位需求精准对接。这一路径将数学建模融入现场工程实践,为培育具备系统思维和解决综合问题能力的技术技能人才提供借鉴。

关键词: 产教融合, 高职, 数学建模, 现场工程师, 课程重构, 实践教学

Abstract: The transformation and upgrading of industries have put forward higher requirements for the quality of on-site engineers, and the problem of disconnection between traditional mathematical modeling courses and production reality has become prominent. This article is based on the concept of integrating industry and education, exploring the practical path of empowering on-site engineer training with mathematical modeling courses, proposing to reconstruct course content based on real enterprise projects, and achieve deep integration between teaching scenarios and production practices; Relying on the school enterprise joint construction platform, guide students to exercise their problem-solving skills in real industrial environments; Establish an evaluation system for school enterprise collaboration to promote precise alignment between assessment standards and job requirements. This path integrates mathematical modeling into on-site engineering practice, providing a reference for cultivating technical and skilled talents with systematic thinking and comprehensive problem-solving abilities.

Key words: Integration of industry and education, Vocational school, Mathematical modeling, On-site engineer, Curriculum restructuring, Practical teaching

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