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Department of Smart Mobility Engineering
Powering the Next Generation of Mobility.
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Introduction
The Fourth Industrial Revolution is rapidly unfolding across the globe and is profoundly transforming nearly every sector, including mobility and transportation. Modern mobility systems are experiencing fundamental changes in their structure, operating principles, application domains, and the ways in which vehicles interact with humans, infrastructure, and other system components.
In Smart Mobility systems, vehicles, infrastructure, humans, and data are interconnected to optimize safety, operational efficiency, sustainability, automation capability, and user experience. Achieving such integration requires the convergence of multiple disciplines, including transportation engineering, control engineering, artificial intelligence, robotics, data science, communication technologies, and energy systems.
Smart Mobility Engineering is emerging as a highly promising and future-oriented academic field that aligns with the evolving technological landscape of the Fourth Industrial Revolution. It is designed to address the growing demand for next-generation mobility technologies and intelligent transportation ecosystems.
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Educational Goals
The Smart Mobility Engineering program was established to provide students with both fundamental and advanced knowledge in Smart Mobility technologies and systems. The four-year undergraduate curriculum comprehensively covers the essential engineering and technological components integrated within Smart Mobility systems. The program balances theoretical foundations and methodological rigor with strong practical and application-oriented education through courses such as Urban Air Mobility, Smart Car Control, Future Mobility Energy Systems, and AI-based Mobility Systems (focused on mobility platforms), as well as Smart Logistics and Smart Traffic Management (focused on infrastructure systems). In addition, students are trained in data-driven technologies and system management through courses such as Data Science for Smart Cities and Digital Twin technologies.
Through this interdisciplinary curriculum, students develop the foundational knowledge required to understand and analyze complex mobility systems, while also acquiring the ability to evaluate and solve engineering problems within the field. Furthermore, the program equips students with the practical and professional skills necessary to become highly qualified professionals in this rapidly growing high-technology industry.
SUMMARY:
Provide students with fundamental and advanced knowledge of Smart Mobility Engineering technologies and systems.
Develop interdisciplinary expertise integrating mobility, AI, control systems, energy systems, logistics, and data science.
Build strong theoretical foundations alongside practical and application-oriented engineering skills.
Equip students with the ability to understand, analyze, and optimize complex Smart Mobility systems.
Train students to solve real-world engineering problems in intelligent transportation and mobility industries.n
Prepare highly qualified professionals for future careers in advanced mobility and high-technology sectors.
Career Path after Graduation
Graduates of the Smart Mobility Engineering program will be awarded a Bachelor’s degree in Smart Mobility Engineering and will be equipped with the knowledge and competencies required for their future professional careers.
Driven by strong domestic and global demand for highly skilled professionals, graduates of Smart Mobility Engineering are expected to enjoy excellent career prospects over the next 10–20 years, as the field lies at the intersection of several globally strategic technologies. Due to its highly interdisciplinary nature, graduates can pursue careers in a wide range of industries and sectors, including electric vehicle (EV) and automotive industries, aerospace and unmanned aerial vehicle (UAV) industries, AI and robotics, smart cities, smart logistics and transportation platforms, defense and autonomous systems, among many others.
In addition, graduates may choose to work at various research institutes, academic institutions, and industrial organizations to conduct research and development in Smart Transportation and related fields. Another pathway available to graduates is to pursue postgraduate studies at their home university or at domestic and international universities in order to further specialize in Smart Transportation and related research areas. For students with an entrepreneurial mindset, the program also provides a strong foundation for launching startups and innovative businesses in Smart Transportation and related industries.
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