Master of Engineering in Electrical Engineering

2 Years On Campus Masters Program

Australian National University

Program Overview

 

The Master of Engineering in Electrical Engineering at the Australian National University is a two-year postgraduate program designed for students who want to develop advanced technical and professional skills for careers in electrical engineering. It combines core engineering knowledge with flexible study options in areas such as power systems, renewable energy, robotics, autonomous systems, artificial intelligence and computer science, allowing students to shape their studies around their career interests.

Curriculum Structure

Year 1

In the first year, students build a strong foundation in advanced electrical and systems engineering through subjects such as Control Systems, Power Systems and Power Electronics, and Introduction to Systems Engineering. Students also develop professional skills through Professional Practice: Holistic Thinking and Communication or Professional Practice: Responsible Innovation and Leadership, while beginning to explore specialist areas such as Digital Systems and Microprocessors, Signal and Information Processing, Energy Resources and Renewable Technologies, and Robotics.

Year 2

The second year gives students greater flexibility to develop specialist expertise through advanced subjects such as Intelligent Autonomous Systems, Advanced Control Systems, Applied AI for Electronic Systems, Engineering Data Analytics, Photovoltaic Power Plants, and Integration of Renewable Energy into Power Systems and Microgrids. Students also complete a Group Project or, where eligible, an individual Research Project, giving them the opportunity to apply their knowledge to a substantial engineering challenge.

Focus Areas

Power systems, power electronics, renewable energy, robotics and autonomous systems, control systems, artificial intelligence, machine learning, digital systems, telecommunications, signal processing, computer networks, photovoltaic technologies, energy efficiency, engineering data analytics

Learning Outcomes

Graduates develop the ability to solve complex electrical engineering problems using advanced engineering methods and technical knowledge. They also learn to assess the ethical, social and environmental impact of engineering decisions, communicate effectively with different audiences, work within multidisciplinary teams, conduct independent investigations and continue developing their professional knowledge.

Professional Alignment (Accreditation)

The program provides advanced technical knowledge, professional practice training and substantial project-based learning that prepare students for professional engineering careers. The current official program information does not specify a particular professional accreditation such as Engineers Australia accreditation, so no specific accreditation is stated.

Reputation (Employability Rankings)

The Australian National University has a strong international reputation and is recognised for its academic and research excellence. ANU is ranked among the world's leading universities, supporting strong recognition of its graduates with employers and providing students with a valuable foundation for professional careers.

Experiential Learning (Research, Projects, Internships etc.)

At the Australian National University (ANU), the Master of Engineering in Electrical Engineering is designed to provide students with a robust blend of theoretical knowledge and practical skills. The program emphasizes experiential learning, allowing students to engage in hands-on projects, collaborate with peers, and utilize state-of-the-art facilities and tools. This approach not only enhances understanding but also prepares graduates for real-world challenges in the engineering field.

 

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

- Advanced Laboratories: Access to specialized labs such as the ANU Research School of Electrical, Energy and Materials Engineering, where students can work on cutting-edge research projects.
- Group Projects: Collaborative projects that encourage teamwork and problem-solving, simulating real-world engineering challenges.
- Internships: Opportunities to undertake internships with industry partners, providing valuable work experience and networking opportunities.
- Software Tools: Proficiency in industry-standard software such as MATLAB, Simulink, and various simulation tools that are essential for electrical engineering applications.
- Field Trips: Organized visits to local industries and research facilities, allowing students to see practical applications of their studies and connect with professionals in the field.
- Research Institutes: Collaboration with renowned research institutes at ANU, fostering innovation and research skills.
- Digital Learning Resources: Access to a wealth of online resources and digital tools that support learning and project development.
- Library Facilities: Extensive library resources, including access to engineering journals, databases, and study spaces tailored for engineering students.

These experiential learning components are integral to the Master of Engineering in Electrical Engineering at ANU, ensuring that you not only learn but also apply your knowledge in meaningful ways.

Embarking on this journey at ANU will equip you with the skills and experiences needed to excel in the dynamic field of electrical engineering.

Progression & Future Opportunities

Pursuing a Master of Engineering in Electrical Engineering at the Australian National University (ANU) opens up a world of opportunities for graduates. With a strong emphasis on innovation and practical skills, you can expect to find yourself in roles such as Electrical Engineer, Systems Engineer, or Project Manager. The demand for skilled professionals in this field is high, making it a promising choice for your future career.

 

Here’s what you can look forward to in terms of progression and opportunities:

- University Services: ANU offers dedicated career services, including resume workshops, interview preparation, and networking events with industry leaders, ensuring you are well-prepared for the job market.
- Employment Stats and Salary Figures: Graduates from the engineering program have a high employment rate, with many securing positions shortly after graduation. The average salary for electrical engineers in Australia is around AUD 80,000 to AUD 100,000, depending on experience and specialization.
- University–Industry Partnerships: ANU has established strong partnerships with leading companies and organizations, such as Siemens and the Australian Energy Market Operator, providing students with valuable internship and job placement opportunities.
- Long-term Accreditation Value: The Master of Engineering program is accredited by Engineers Australia, ensuring that your qualification is recognized both nationally and internationally, enhancing your employability.
- Graduation Outcomes: ANU graduates are known for their strong analytical and problem-solving skills, making them highly sought after in various sectors, including telecommunications, renewable energy, and automation.

Further Academic Progression: After completing your Master’s degree, you may choose to further your studies by pursuing a PhD in Electrical Engineering or a related field. This path not only deepens your expertise but also opens doors to academic positions, research opportunities, and advanced roles in industry. Engaging in research at ANU can lead to groundbreaking innovations and contribute significantly to the field.

Choosing to study at ANU is a step towards a fulfilling and successful career in electrical engineering. The combination of a robust curriculum, supportive services, and strong industry connections makes it an excellent choice for your future.

Program Key Stats

$60,800
$41,300
$150

Febr Intake : 15th DecJuly Intake : 15th May


No
Yes

Eligibility Criteria

3 - 3.4
4 Years

NA
NA
NA
6.5
80
2:1
NA

Additional Information & Requirements

Country Requirements

Career Options

  • Electrical Engineer
  • Electrical Systems Engineer
  • Power Systems Engineer
  • Power Electronics Engineer
  • Renewable Energy Engineer
  • Robotics Engineer
  • Autonomous Systems Engineer
  • Control Systems Engineer
  • Artificial Intelligence Engineer
  • Machine Learning Engineer
  • Telecommunications Engineer

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