Masters Degree Programme in Information and Communication Technology: Robotics and Autonomous Systems

Turku

 

INTAKE: August

Program Overview

The Master's Degree Programme in Information and Communication Technology: Robotics and Autonomous Systems at the University of Turku is designed for students who aspire to become experts in the rapidly evolving fields of robotics and autonomous systems. This multidisciplinary program provides a solid foundation in the principles of robotics, automation, and control systems while incorporating the latest advancements in artificial intelligence (AI), machine learning, and autonomous technologies. The curriculum emphasizes both theoretical knowledge and practical skills, equipping students to address the complex challenges faced by industries utilizing robotics and automation. The program prepares graduates for roles in a variety of industries, including manufacturing, healthcare, aerospace, and automotive sectors, where robotics and autonomous systems are making a significant impact.

Curriculum: The curriculum of the Master's Degree Programme in Information and Communication Technology: Robotics and Autonomous Systems is designed to provide students with an in-depth understanding of robotics and automation technologies. Key subjects include advanced robotics, mechatronics, artificial intelligence, sensor technology, machine learning, and system integration. The program consists of a combination of core courses, elective courses, and hands-on projects that allow students to apply their knowledge in real-world settings. Students will also gain experience working with cutting-edge robotics equipment and simulation tools, preparing them for the demands of the industry. Furthermore, students have the option to choose electives in related fields such as control engineering, computer vision, and autonomous systems design, which provide a tailored approach to learning.

Research Focus: The University of Turku’s robotics program places strong emphasis on research that bridges the gap between theoretical knowledge and real-world applications. Research areas in the program include autonomous robots, multi-robot systems, human-robot interaction, AI in robotics, and advanced control systems. The program is closely tied to ongoing research projects, allowing students to work with faculty members and research teams on innovative robotics technologies. The university’s collaboration with various industrial partners provides students access to cutting-edge research in autonomous systems, offering opportunities for students to engage in state-of-the-art research and development activities. This focus on research ensures that students are well-prepared to push the boundaries of robotics technology.

Industry Engagement: The University of Turku’s robotics program offers extensive industry engagement through collaborations with both local and international companies. Students are provided with opportunities to work on real-world projects and internships in partnership with industry leaders in fields such as robotics, automation, and AI. The program also benefits from the university's active involvement in robotics research networks and industry consortia, ensuring that students are exposed to the latest trends and challenges in the field. This industry engagement helps bridge the gap between academic knowledge and practical application, giving students a competitive edge when entering the workforce.

Global Perspective: The Master's Degree Programme in Information and Communication Technology: Robotics and Autonomous Systems at the University of Turku takes a global perspective, preparing students to work in an increasingly interconnected world. The program attracts students from various countries, fostering a diverse and collaborative learning environment. Students also have opportunities to participate in exchange programs and internships abroad, allowing them to gain valuable international experience in the field of robotics and autonomous systems. The global nature of the program ensures that students are prepared to tackle international challenges and work in multinational teams within the field of robotics.

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Location

Turku

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Score

Pollster Education

Tuition Fee

€ 12000

Postgraduate Entry Requirements

Application Fee: €100

Academic Qualifications: Applicants for postgraduate programs typically require a minimum academic achievement of 60% or above in their bachelor's degree.

English Language Proficiency:

  • English language test waiver is applicable if the Bachelor's, Master's, Licentiate, or Doctoral degree is in English language.

The University of Turku offers various scholarships for international students, aimed at supporting students with the cost of their tuition fees and ensuring they have the opportunity to pursue their studies in Finland without financial concerns. These scholarships are designed to attract talented students from across the globe, particularly for Master’s degree programs, as the university has a strong international student body.

University of Turku Scholarship Scheme: The University of Turku offers a merit-based scholarship scheme for international students applying to Master’s degree programs. These scholarships cover part or all of the tuition fees for students from non-EU/EEA countries. The scholarships are competitive and are awarded based on the academic excellence and merits of the applicants. Students who are accepted to a degree program at the university are automatically considered for this scholarship.

External Scholarships: The university provides information and guidance on various external scholarships that are available to international students, including scholarships offered by Finnish government agencies and private foundations.

Erasmus+ Grants: Students who are part of the Erasmus+ exchange program may be eligible for grants to support their studies in Finland.

Country-Specific Scholarships: Some countries have specific scholarship agreements with Finland, and students from these countries may apply for additional financial support.

Graduates of the Master's Degree Programme in Information and Communication Technology: Robotics and Autonomous Systems from the University of Turku have a wide range of career opportunities in industries that rely on robotics, automation, and autonomous systems. As robotics and automation technologies continue to advance, the demand for skilled professionals in these fields is expected to grow. 

Robotics Engineer: Robotics engineers design and build robotic systems, ranging from manufacturing robots to autonomous vehicles. Graduates can work in industries such as automotive, aerospace, manufacturing, and healthcare, developing robots that improve efficiency, precision, and safety in various applications.

Automation Engineer: Automation engineers focus on implementing automated solutions to optimize processes across industries. Graduates can work in manufacturing plants, chemical industries, or power systems, where they can design automated systems to enhance productivity and reduce operational costs.

Autonomous Systems Engineer: With a focus on autonomous technologies, such as self-driving cars and drones, graduates can pursue roles where they design, test, and implement systems that operate independently. This is an especially growing field in sectors like transportation, logistics, and defense.

Mechatronics Engineer: Mechatronics engineers integrate mechanical, electrical, and software engineering to develop innovative systems, such as robotic arms, automated machines, and intelligent devices. Graduates can find opportunities in industries such as electronics, manufacturing, and robotics.

AI and Machine Learning Specialist: Graduates with a background in robotics and autonomous systems often work as AI and machine learning specialists, developing algorithms that allow machines to learn from their environment and make decisions autonomously. These specialists are highly sought after in sectors like robotics, automotive, and technology.

Control Systems Engineer: Control systems engineers design systems that ensure the proper functioning of autonomous robots, machines, and systems. These engineers work on control strategies for various applications, from robotics to industrial systems and automation.

Human-Robot Interaction Specialist: Graduates with expertise in human-robot interaction design systems where humans and robots collaborate seamlessly. This area is especially important in healthcare, where robots assist with surgeries or support elderly care, as well as in manufacturing environments.

Researcher in Robotics and AI: Graduates interested in academia or advanced research can pursue careers in research and development in robotics and AI. Many may work in research institutions, universities, or R&D divisions of technology companies, focusing on innovating the next generation of robotic technologies and autonomous systems.

Robotics Consultant: Robotics consultants provide expert advice to businesses and organizations on integrating robotic systems into their operations. They assess the feasibility of automation solutions, design implementation strategies, and help companies optimize their processes.

Entrepreneur in Robotics and Autonomous Systems: With a strong foundation in robotics, engineering, and technology, graduates can also venture into entrepreneurship, creating startups focused on robotics solutions, automation technologies, or AI-driven products.

Systems Architect: Systems architects design the frameworks and architectures for large-scale robotic systems. These professionals oversee the integration of various sub-systems and ensure that all components of a robotics or automation project work cohesively.

Cyber-Physical Systems Engineer: Cyber-physical systems combine computing, networking, and physical processes. Graduates can work on creating systems that connect sensors, actuators, and robots to the Internet of Things (IoT), enabling smarter devices and autonomous systems.

Drone Technology Specialist: With advancements in drone technology, graduates can pursue careers as drone technology specialists, working on autonomous flying systems for applications in agriculture, logistics, surveillance, and environmental monitoring.


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