Exploration and Practice of Linux Operating System Teaching in the Intelligent Connected Vehicle Major
DOI: https://doi.org/10.62517/jhet.202515638
Author(s)
Hong Zhang, Lin Cheng, Ping Yang
Affiliation(s)
Beijing Polytechnic University, Beijing, China
Abstract
With the rapid development of intelligent connected vehicle (ICV) technology, the automotive industry is undergoing an unprecedented transformation, leading to a surge in demand for highly skilled professionals who possess interdisciplinary knowledge in software, hardware, and network systems. This paper first examines the strategic significance of establishing dedicated academic programs in the ICV major to meet the evolving needs of the industry and cultivate specialized talent. It then delves into the critical role of the Linux operating system within this domain, highlighting its indispensability for developing robust, real-time, and secure vehicular software platforms, including autonomous driving algorithms, infotainment systems, and vehicle-to-everything (V2X) communication modules. The core of this study presents a comprehensive exploration of Linux teaching content tailored for ICV students, covering essential topics such as kernel customization, device driver development, real-time system optimization, and system security. Furthermore, it introduces innovative pedagogical approaches that integrate theoretical instruction with hands-on practical training, project-based learning, and industry collaborations. By sharing these insights and experiences, this paper aims to provide a valuable reference framework for educational institutions seeking to enhance their Linux curriculum and effectively prepare a new generation of engineers for the challenges and opportunities in the intelligent connected vehicle sector.
Keywords
Intelligent Connected Vehicle; Linux Operating System; Teaching Methods; Practical Teaching; Talent Cultivation
References
[1]Zhao, S., Xu, K., Song, J., & Wang, W. (2020). Analysis of intelligent connected vehicle operating system and its implementation strategy. Science and Technology Management Research, 2020(9), 107-111.
[2]Liu, X., Song, W., Cheng, Y., & Chen, Q. (Year). Exploration and practice of the application-oriented graduate cultivation model for intelligent connected vehicle under the background of "Four-Chain Integration". Automobile Applied Technology, 2025(22),104-109
[3]Jiang, F., Autonomous driving systems and street space reallocation: A paradigm shift from road redundancy to public space activation. Smart City, 2025(27),217-219
[4]Li, J., Optimization of the professional curriculum system of intelligent networked vehicles based on the ability requirements of vocational positions. Automobile Education, 2025(24), 49-51
[5]Quan W., Research on the display application of virtual instrument based on Linux system and Qt development framework. Harbin: Harbin University of Science and Technology, 2017
[6]Yang, A., Zhang, Z., and Li, X., "Teaching reform and practice of Linux operating system course under the application-oriented talent training model," Journal of Science of Teachers′ College and University, vol. 45, no. 11, pp. 80-83, 2025.
[7] Li, K., Construction of Embedded Operating System and Application Course Based on Linux, Automation Information Technology, no. 18, pp. 13-15, Sep 2025.
[8]Zhang, J., Zhu, K., Zhang, N., Wang, B., and Cao, L., A Study on the Reconstruction of Linux Operating System Management Curriculum System Based on Project-Based Teaching Method, Computer Knowledge and Technology, vol. 21, no. 19, 172-175, July 2025.
[9]Song, W., & Qin, N. Exploration of curriculum reform for computer network major in higher vocational colleges based on blended teaching model—Taking "Linux System Services" course as an example. Journal of Guangxi Open University, 31(2), 2020.
[10]Wang, Y., & Wu, H. (2025). Exploration and practice of integrated curriculum teaching reform for "Fundamentals of Linux System" in the context of emerging engineering education. Journal of Hubei Open University, 45(2), 49-53.2025