Master of Engineering Science (Systems & Control)

2 Years On Campus Masters Program

University of New South Wales

Program Overview

The Master of Engineering Science (Systems and Control) at UNSW Sydney is a 2-year full-time postgraduate degree designed for students with an existing four-year engineering qualification who want to specialise in systems and control engineering.

Curriculum Structure:

In the first year, students develop advanced knowledge through disciplinary courses, advanced disciplinary courses, engineering and technical management, and elective courses.

In the second year, students complete further advanced courses, enquiry-based learning, electives, and a complex research project, strengthening their technical and problem-solving capabilities.

Focus Areas: Systems and Control, Automation, Electrical Engineering, Mechanical Engineering, Dynamic Systems, Robotics, Control Systems, and Engineering Management.

Learning Outcomes: Apply advanced systems and control principles, analyse complex dynamic systems, develop and implement engineering solutions, conduct research, manage technical projects, and solve open-ended engineering problems.

Professional Alignment (Accreditation): The program is designed for qualified engineers seeking to specialise, retrain, or advance their careers in systems and control engineering.

Reputation (Employability Rankings): UNSW Engineering is ranked #1 in Australia and #33 globally for Engineering and Technology, with UNSW also recognised as having the Most Employable students for seven consecutive years (2020–2026).

Experiential Learning (Research, Projects, Internships etc.)

At the University of New South Wales (UNSW), the Master of Engineering Science (Systems & Control) program is designed to provide students with a robust blend of theoretical knowledge and practical skills. This program emphasizes experiential learning, allowing students to engage in hands-on projects, collaborate with peers, and utilize state-of-the-art facilities and tools. By immersing themselves in real-world applications, students not only enhance their understanding of systems and control engineering but also prepare themselves for successful careers in the field.

 

Here are some key aspects of the experiential learning opportunities available in this program:

- Advanced Laboratories: Access to specialized laboratories equipped with cutting-edge technology for research and experimentation in systems and control engineering.

- Software Tools: Proficiency in industry-standard software such as MATLAB, Simulink, and LabVIEW, which are integral for modeling, simulation, and control system design.

- Group Projects: Collaborative projects that encourage teamwork and problem-solving, allowing students to tackle real engineering challenges and develop solutions.

- Internship Opportunities: Connections with industry partners that provide students with internship placements, offering valuable work experience and networking opportunities.

- Field Trips: Organized visits to local industries and research facilities, giving students insights into practical applications of their studies and exposure to potential employers.

- Research Institutes: Collaboration with renowned research institutes at UNSW, where students can engage in cutting-edge research and innovation in systems and control.

- Digital Tools: Utilization of various digital platforms and tools for project management and collaboration, enhancing the learning experience and preparing students for modern engineering environments.

- Library Resources: Access to extensive library resources, including engineering databases and journals, to support research and project work.

Progression & Future Opportunities

The Master of Engineering Science (Systems & Control) at the University of New South Wales (UNSW) equips graduates with the skills and knowledge to excel in a variety of high-demand roles in engineering. Graduates often find themselves in positions such as Control Systems Engineer, Automation Engineer, Systems Engineer, and Robotics Engineer. With the rapid advancement of technology, the need for experts in systems and control is growing, making this program a strategic choice for your future:

 

- Career Services: UNSW offers dedicated career support, including resume workshops, interview preparation, and networking events with industry professionals to help you secure your ideal job.
- Employment Statistics: The university boasts an impressive employment rate of over 90% for graduates, with many securing roles within six months of graduation.
- Salary Figures: Graduates from this program can expect competitive salaries, with average starting salaries around AUD 80,000, which can increase significantly with experience.
- University–Industry Partnerships: UNSW has strong ties with leading companies such as Siemens, Boeing, and CSIRO, providing students with opportunities for internships, projects, and real-world experience.
- Long-term Accreditation Value: The program is accredited by Engineers Australia, ensuring that your qualification is recognized both nationally and internationally, enhancing your employability.
- Graduation Outcomes: Alumni of the program have gone on to work in diverse sectors, including aerospace, manufacturing, and robotics, often taking on leadership roles within their organizations.

Further Academic Progression: After completing the Master of Engineering Science (Systems & Control), you may choose to pursue a PhD in Engineering or related fields. This path allows you to engage in advanced research, contribute to innovative projects, and further enhance your expertise in systems and control, opening doors to academic positions or high-level industry roles.

By choosing this program at UNSW, you’re not just earning a degree; you’re investing in a future filled with opportunities and growth in a dynamic field.

Program Key Stats

$61000
$45000
$150

Febr Intake : 14th JanJune Intake : 1st Mar


No
Yes

Eligibility Criteria

NA
4 Years

NA
NA
NA
6.5
90
NA

Additional Information & Requirements

Country Requirements

Career Options

  • Systems Engineer
  • Control Systems Engineer
  • Automation Engineer
  • Robotics Engineer
  • Mechatronics Engineer
  • Electrical Engineer

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